Skip to main content
Erschienen in: Wireless Personal Communications 1/2018

23.08.2017

Device-to-Device Communications: A Contemporary Survey

verfasst von: Syed Tariq Shah, Syed Faraz Hasan, Boon-Chong Seet, Peter Han Joo Chong, Min Young Chung

Erschienen in: Wireless Personal Communications | Ausgabe 1/2018

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Device-to-device (D2D) communication is a new enabling technology for the next generation cellular networks. In D2D communications, two or more user equipments directly communicate with each other with a very restricted involvement of the evolved Node B. The main objective is to realize high data rates, low power consumption, low delays and improve the overall spectral efficiency. In addition to these advantages, D2D communications poses several research challenges in terms of interference and power control, and whether or not D2D communication should be used in a given environment. In order to solve these issues, significant amount of research and development work has been done by both industry and academia, which is comprehensively covered in this survey article. Firstly, we discuss the use case scenarios of D2D communication by classifying its applications into two types: commercial and public safety services. This is followed by an in-depth discussion on the state-of-the-art solutions proposed in various research studies addressing different issues associated with each classification. While discussing a large number of previous works, we highlight some of the open research issues and challenges in D2D communications.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literatur
2.
Zurück zum Zitat OVUM Plc. (2009). Mobile Broadband Users and Revenues Forecast Pack to 2014. OVUM Plc. (2009). Mobile Broadband Users and Revenues Forecast Pack to 2014.
3.
Zurück zum Zitat Index, Cisco Visual Networking. (2015). Global mobile data traffic forecast update, 2014–2019. San Jose, CA: Cisco. Index, Cisco Visual Networking. (2015). Global mobile data traffic forecast update, 2014–2019. San Jose, CA: Cisco.
5.
Zurück zum Zitat Mumtaz, S., & Rodriguez, J. (Eds.) (2014). Smart device to smart device communication. Springer. ISBN: 978-3-319-04963-2. Mumtaz, S., & Rodriguez, J. (Eds.) (2014). Smart device to smart device communication. Springer. ISBN: 978-3-319-04963-2.
6.
Zurück zum Zitat Doppler, K., Rinne, M., Wijting, C., Riberio, C. B., & Hugl, K. (2009). Device-to-device communication as an underlay to LTE-advanced networks. IEEE Communications Magazine, 47(12), 42–49.CrossRef Doppler, K., Rinne, M., Wijting, C., Riberio, C. B., & Hugl, K. (2009). Device-to-device communication as an underlay to LTE-advanced networks. IEEE Communications Magazine, 47(12), 42–49.CrossRef
7.
Zurück zum Zitat Fodor, G., Dahlman, E., Mildh, G., Parkvall, S., Reider, N., Miklos, G., et al. (2012). Design aspects of network assisted device-to-device communications. IEEE Communications Magazine, 50(12), 170–177.CrossRef Fodor, G., Dahlman, E., Mildh, G., Parkvall, S., Reider, N., Miklos, G., et al. (2012). Design aspects of network assisted device-to-device communications. IEEE Communications Magazine, 50(12), 170–177.CrossRef
8.
Zurück zum Zitat Janis, P., Chia-Hao, Y., Doppler, K., Ribeiro, C., Wijting, C., Hugl, K., et al. (2009). Device-to-device communication underlaying cellular communications systems. International Journal of Communications, Network and System Sciences, 2009, 169–178.CrossRef Janis, P., Chia-Hao, Y., Doppler, K., Ribeiro, C., Wijting, C., Hugl, K., et al. (2009). Device-to-device communication underlaying cellular communications systems. International Journal of Communications, Network and System Sciences, 2009, 169–178.CrossRef
10.
Zurück zum Zitat Asadi, A., Wang, A. Q., & Mancuso, V. (2014). A survey on device-to-device communication in cellular networks. IEEE Communications Surveys and Tutorials, 16(4), 1801–1819.CrossRef Asadi, A., Wang, A. Q., & Mancuso, V. (2014). A survey on device-to-device communication in cellular networks. IEEE Communications Surveys and Tutorials, 16(4), 1801–1819.CrossRef
11.
Zurück zum Zitat Mach, P., Becvar, Z., & Vanek, T. (2015). In-band device-to-device communication in OFDMA cellular networks: a survey and challenges. IEEE Communications Surveys and Tutorials, 17(4), 1885–1922. doi:10.1109/COMST.2015.2447036.CrossRef Mach, P., Becvar, Z., & Vanek, T. (2015). In-band device-to-device communication in OFDMA cellular networks: a survey and challenges. IEEE Communications Surveys and Tutorials, 17(4), 1885–1922. doi:10.​1109/​COMST.​2015.​2447036.CrossRef
13.
Zurück zum Zitat Pyattaev, A., Johnsson, K., Andreev, S., & Koucheryavy, Y. (2013). 3GPP LTE traffic offloading onto WiFi Direct. In IEEE wireless communications and networking conference workshops (WCNCW), 2013, Shanghai (pp. 135–140). doi:10.1109/WCNCW.2013.6533328 Pyattaev, A., Johnsson, K., Andreev, S., & Koucheryavy, Y. (2013). 3GPP LTE traffic offloading onto WiFi Direct. In IEEE wireless communications and networking conference workshops (WCNCW), 2013, Shanghai (pp. 135–140). doi:10.​1109/​WCNCW.​2013.​6533328
14.
Zurück zum Zitat Pyattaev, A., Johnsson, K., Andreev, S., & Koucheryavy, Y. (2013). Proximity-based data offloading via network assisted device-to-device communications. In IEEE 77th dresden on vehicular technology conference (VTC Spring), 2013 (pp. 1–5). doi:10.1109/VTCSpring.2013.6692723. Pyattaev, A., Johnsson, K., Andreev, S., & Koucheryavy, Y. (2013). Proximity-based data offloading via network assisted device-to-device communications. In IEEE 77th dresden on vehicular technology conference (VTC Spring), 2013 (pp. 1–5). doi:10.​1109/​VTCSpring.​2013.​6692723.
15.
Zurück zum Zitat Andreev, S., Galinina, O., Pyattaev, A., Johnsson, K., & Koucheryavy, Y. (2015). Analyzing assisted offloading of cellular user sessions onto D2D links in unlicensed bands. IEEE Journal on Selected Areas in Communications, 33(1), 67–80. doi:10.1109/JSAC.2014.2369616.CrossRef Andreev, S., Galinina, O., Pyattaev, A., Johnsson, K., & Koucheryavy, Y. (2015). Analyzing assisted offloading of cellular user sessions onto D2D links in unlicensed bands. IEEE Journal on Selected Areas in Communications, 33(1), 67–80. doi:10.​1109/​JSAC.​2014.​2369616.CrossRef
16.
Zurück zum Zitat Pyattaev, A., Johnsson, K., Surak, A., Florea, R., Andreev, S., & Koucheryavy, Y. (2014). Network-assisted D2D communications: Implementing a technology prototype for cellular traffic offloading. In IEEE wireless communications and networking conference (WCNC), 2014, Istanbul (pp. 3266–3271). doi:10.1109/WCNC.2014.6953070. Pyattaev, A., Johnsson, K., Surak, A., Florea, R., Andreev, S., & Koucheryavy, Y. (2014). Network-assisted D2D communications: Implementing a technology prototype for cellular traffic offloading. In IEEE wireless communications and networking conference (WCNC), 2014, Istanbul (pp. 3266–3271). doi:10.​1109/​WCNC.​2014.​6953070.
17.
Zurück zum Zitat Andreev, S., Pyattaev, A., Johnsson, K., Galinina, O., & Koucheryavy, Y. (2014). Cellular traffic offloading onto network-assisted device-to-device connections. IEEE Communications Magazine, 52(4), 20–31. doi:10.1109/MCOM.2014.6807943.CrossRef Andreev, S., Pyattaev, A., Johnsson, K., Galinina, O., & Koucheryavy, Y. (2014). Cellular traffic offloading onto network-assisted device-to-device connections. IEEE Communications Magazine, 52(4), 20–31. doi:10.​1109/​MCOM.​2014.​6807943.CrossRef
18.
Zurück zum Zitat Ding, G., Wang, J., Wu, Q., Yao, Y. D., Song, F., & Tsiftsis, T. A. (2016). Cellular-base-station-assisted device-to-device communications in TV white space. IEEE Journal on Selected Areas in Communications, 34(1), 107–121. doi:10.1109/JSAC.2015.2452532.CrossRef Ding, G., Wang, J., Wu, Q., Yao, Y. D., Song, F., & Tsiftsis, T. A. (2016). Cellular-base-station-assisted device-to-device communications in TV white space. IEEE Journal on Selected Areas in Communications, 34(1), 107–121. doi:10.​1109/​JSAC.​2015.​2452532.CrossRef
19.
Zurück zum Zitat Zhang, R., et al. (2015). LTE-unlicensed: The future of spectrum aggregation for cellular networks. IEEE Wireless Communications, 22(3), 15059. Zhang, R., et al. (2015). LTE-unlicensed: The future of spectrum aggregation for cellular networks. IEEE Wireless Communications, 22(3), 15059.
20.
Zurück zum Zitat 3GPP, RP-140808: Review of regulatory requirements for unlicensed spectrum, Alcatel-Lucent, Alcatel-Lucent Shanghai Bell, Ericsson, Huawei, HiSilicon, IAESI, LG, Nokia, NSN, Qualcomm, NTT Docomo, Technical report, 2014. 3GPP, RP-140808: Review of regulatory requirements for unlicensed spectrum, Alcatel-Lucent, Alcatel-Lucent Shanghai Bell, Ericsson, Huawei, HiSilicon, IAESI, LG, Nokia, NSN, Qualcomm, NTT Docomo, Technical report, 2014.
22.
Zurück zum Zitat Lee, D. H., et al. (2014). Two-stage semidistributed resource management for device-to-device communication in cellular networks. IEEE Transactions on Wireless Communications, 13(4), 190820. Lee, D. H., et al. (2014). Two-stage semidistributed resource management for device-to-device communication in cellular networks. IEEE Transactions on Wireless Communications, 13(4), 190820.
23.
Zurück zum Zitat Wang, F., Zhou, B., Jing, X., & Wang, H. (2011). An efficient retransmission scheme for data sharing in D2D assisted cellular networks. In Mobile congress (GMC), 2011. Global, Shanghai (pp. 1–6). doi:10.1109/GMC.2011.6103910. Wang, F., Zhou, B., Jing, X., & Wang, H. (2011). An efficient retransmission scheme for data sharing in D2D assisted cellular networks. In Mobile congress (GMC), 2011. Global, Shanghai (pp. 1–6). doi:10.​1109/​GMC.​2011.​6103910.
24.
Zurück zum Zitat Janis, P., Koivunen, V., Ribeiro, C., & Korhonen, J. (2009). Interference aware resource allocation for device-to-device radio underlaying cellular networks. In Proceedings of the IEEE VTC 2009-Spring, Barcelona, Spain, April 2009 (pp. 15). Janis, P., Koivunen, V., Ribeiro, C., & Korhonen, J. (2009). Interference aware resource allocation for device-to-device radio underlaying cellular networks. In Proceedings of the IEEE VTC 2009-Spring, Barcelona, Spain, April 2009 (pp. 15).
25.
Zurück zum Zitat Xu, S., Wang, H., Chen, T., Huang, Q., & Peng, T. (2010). Effective interference cancellation scheme for device-to-device communication underlaying cellular networks, In Proceedings of the IEEE VTC-Fall (pp. 15). Xu, S., Wang, H., Chen, T., Huang, Q., & Peng, T. (2010). Effective interference cancellation scheme for device-to-device communication underlaying cellular networks, In Proceedings of the IEEE VTC-Fall (pp. 15).
26.
Zurück zum Zitat Xu, S., Wang, H., & Chen, T. (2012). Effective interference cancellation mechanisms for D2D communication in multi-cell cellular networks. In IEEE vehicular technology conference-fall. Xu, S., Wang, H., & Chen, T. (2012). Effective interference cancellation mechanisms for D2D communication in multi-cell cellular networks. In IEEE vehicular technology conference-fall.
27.
Zurück zum Zitat Wang, H., & Chu, X. (2012). Distance-constrained resource-sharing criteria for device-to-device communications underlaying cellular networks. Electronics Letters, 48(9), 528–530.CrossRef Wang, H., & Chu, X. (2012). Distance-constrained resource-sharing criteria for device-to-device communications underlaying cellular networks. Electronics Letters, 48(9), 528–530.CrossRef
28.
Zurück zum Zitat 3GPP TS 36.213 V8.2.0: E-UTRA physical layer procedures. 3GPP TS 36.213 V8.2.0: E-UTRA physical layer procedures.
29.
Zurück zum Zitat Min, H., Lee, J., Park, S., & Hong, D. (2011). Capacity enhancement using an interference limited area for device-to-device uplink underlaying cellular networks. IEEE Transactions on Wireless Communications, 10(12), 39954000. Min, H., Lee, J., Park, S., & Hong, D. (2011). Capacity enhancement using an interference limited area for device-to-device uplink underlaying cellular networks. IEEE Transactions on Wireless Communications, 10(12), 39954000.
30.
Zurück zum Zitat Chen, X., Chen, L., Zeng, M., Zhang, X., & Yang, D. (2012). Downlink resource allocation for device-to-device communication underlaying cellular networks. In PIMRC. Chen, X., Chen, L., Zeng, M., Zhang, X., & Yang, D. (2012). Downlink resource allocation for device-to-device communication underlaying cellular networks. In PIMRC.
31.
Zurück zum Zitat Ni, M., Zheng, L., Tong, F., Pan, J., & Cai, L. (2015). A geometrical-based throughput bound analysis for device-to-device communications in cellular networks. IEEE Journal on Selected Areas in Communications, 33(1), 100110.CrossRef Ni, M., Zheng, L., Tong, F., Pan, J., & Cai, L. (2015). A geometrical-based throughput bound analysis for device-to-device communications in cellular networks. IEEE Journal on Selected Areas in Communications, 33(1), 100110.CrossRef
32.
Zurück zum Zitat Ni, M., Zheng, L., Tong, F., Pan, J., & Cai, L. (2015). A geometrical-based throughput analysis for device-to-device communications in a sector-partitioned cell. IEEE Transactions on Wireless Communications, 14(4), 22322244.CrossRef Ni, M., Zheng, L., Tong, F., Pan, J., & Cai, L. (2015). A geometrical-based throughput analysis for device-to-device communications in a sector-partitioned cell. IEEE Transactions on Wireless Communications, 14(4), 22322244.CrossRef
33.
Zurück zum Zitat Ni, M., Pan, J., & Cai, L. (2014). Power emission density-based interference analysis for random wireless networks. In Proceedings of the IEEE ICC (pp. 440–445). Ni, M., Pan, J., & Cai, L. (2014). Power emission density-based interference analysis for random wireless networks. In Proceedings of the IEEE ICC (pp. 440–445).
34.
Zurück zum Zitat Pei, Y., & Liang, Y.-C. (2013). Resource allocation for device-to-device communication overlaying two-way cellular networks. IEEE Transactions on Wireless Communications, 12(7), 36113621.CrossRef Pei, Y., & Liang, Y.-C. (2013). Resource allocation for device-to-device communication overlaying two-way cellular networks. IEEE Transactions on Wireless Communications, 12(7), 36113621.CrossRef
35.
Zurück zum Zitat Xu, C., Song, L., Han, Z., Li, D., & Jiao, B. (2012). Resource allocation using a reverse iterative combinatorial auction for device-to-device underlay cellular networks. In Proceedings of the IEEE GLOBECOM (pp. 4542–4547). Xu, C., Song, L., Han, Z., Li, D., & Jiao, B. (2012). Resource allocation using a reverse iterative combinatorial auction for device-to-device underlay cellular networks. In Proceedings of the IEEE GLOBECOM (pp. 4542–4547).
36.
Zurück zum Zitat Xu, C., Song, L., Han, Z., Zhao, Q., Wang, X., Cheng, X., et al. (2012). Efficiency resource allocation for device-to-device underlay communication systems: A reverse iterative combinatorial auction based approach. IEEE Journal On Selected Areas In Communications/Supplement, 31, 348–358. Xu, C., Song, L., Han, Z., Zhao, Q., Wang, X., Cheng, X., et al. (2012). Efficiency resource allocation for device-to-device underlay communication systems: A reverse iterative combinatorial auction based approach. IEEE Journal On Selected Areas In Communications/Supplement, 31, 348–358.
38.
Zurück zum Zitat Yanli, Xu, Liu, Yong, & Li, Dong. (2015). Resource management for interference mitigation in device-to-device communication. IET Communications, 9(9), 1199–1207.CrossRef Yanli, Xu, Liu, Yong, & Li, Dong. (2015). Resource management for interference mitigation in device-to-device communication. IET Communications, 9(9), 1199–1207.CrossRef
39.
Zurück zum Zitat Ye, Qiaoyang, Al-Shalash, Mazin, Caramanis, Constantine, & Andrews, Jeffrey G. (2015). Distributed resource allocation in device-to-device enhanced cellular networks. IEEE Transactions on Communications, 63(2), 441–454.CrossRef Ye, Qiaoyang, Al-Shalash, Mazin, Caramanis, Constantine, & Andrews, Jeffrey G. (2015). Distributed resource allocation in device-to-device enhanced cellular networks. IEEE Transactions on Communications, 63(2), 441–454.CrossRef
40.
Zurück zum Zitat Razaviyayn, M., Luo, Z.-Q., Tseng, P., & Pang, J.-S. (2011). A Stackelberg game approach to distributed spectrum management. Mathematical Programming, 129(2), 197224.MathSciNetCrossRefMATH Razaviyayn, M., Luo, Z.-Q., Tseng, P., & Pang, J.-S. (2011). A Stackelberg game approach to distributed spectrum management. Mathematical Programming, 129(2), 197224.MathSciNetCrossRefMATH
41.
Zurück zum Zitat Kaufman, B., Lilleberg, J., & Aazhang, B. (2013). Spectrum sharing scheme between cellular users and ad-hoc device-to-device users. IEEE Transactions on Wireless Communications, 12(3), 10381049.CrossRef Kaufman, B., Lilleberg, J., & Aazhang, B. (2013). Spectrum sharing scheme between cellular users and ad-hoc device-to-device users. IEEE Transactions on Wireless Communications, 12(3), 10381049.CrossRef
42.
Zurück zum Zitat Johnson, D. B., Maltz, D. A., & Broch, J. (2001). DSR: The dynamic source routing protocol for multi-hop wireless ad hoc networks. In C. E. Perkins (Ed.), Ad Hoc Network (pp. 139–172). Boston: Addison-Wesley. Johnson, D. B., Maltz, D. A., & Broch, J. (2001). DSR: The dynamic source routing protocol for multi-hop wireless ad hoc networks. In C. E. Perkins (Ed.), Ad Hoc Network (pp. 139–172). Boston: Addison-Wesley.
43.
Zurück zum Zitat Cicalo, S., Tralli, V., & Perez-Neira, A. I. (2011). Centralized vs distributed resource allocation in multi-cell OFDMA systems. In IEEE 73rd vehicular technology conference (VTC Spring), 2011, Yokohama (pp. 1–6). doi:10.1109/VETECS.2011.5956553. Cicalo, S., Tralli, V., & Perez-Neira, A. I. (2011). Centralized vs distributed resource allocation in multi-cell OFDMA systems. In IEEE 73rd vehicular technology conference (VTC Spring), 2011, Yokohama (pp. 1–6). doi:10.​1109/​VETECS.​2011.​5956553.
44.
Zurück zum Zitat Wu, Y., Wang, J., Qian, L., & Schober, R. (2015). Optimal power control for energy efficient D2D communication and its distributed implementation. IEEE Communications Letters, 19(5), 815–818. doi:10.1109/LCOMM.2015.2407871.CrossRef Wu, Y., Wang, J., Qian, L., & Schober, R. (2015). Optimal power control for energy efficient D2D communication and its distributed implementation. IEEE Communications Letters, 19(5), 815–818. doi:10.​1109/​LCOMM.​2015.​2407871.CrossRef
45.
Zurück zum Zitat Gu, J., Bae, S. J., Choi, B. G., & Chung, M. Y. (2011). Dynamic power control mechanism for interference coordination of device-to-device communication in cellular networks, In 3rd International conference on ubiquitous and future networks (ICUFN) (pp. 71–75). Gu, J., Bae, S. J., Choi, B. G., & Chung, M. Y. (2011). Dynamic power control mechanism for interference coordination of device-to-device communication in cellular networks, In 3rd International conference on ubiquitous and future networks (ICUFN) (pp. 71–75).
46.
Zurück zum Zitat Cheng, Yongsheng, Gu, Yuantao, & Lin, Xiaokang. (2013). Combined power control and link selection in device to-device enabled cellular systems. IET Communications, 7(12), 1221–1230.CrossRef Cheng, Yongsheng, Gu, Yuantao, & Lin, Xiaokang. (2013). Combined power control and link selection in device to-device enabled cellular systems. IET Communications, 7(12), 1221–1230.CrossRef
47.
Zurück zum Zitat Berggren, F., Jantti, R., & Seong-Lyun, K. (2001). A generalized algorithm for constrained power control with capability of temporary removal. IEEE Transactions on Vehicular Technology, 50(6), 1604–1612.CrossRef Berggren, F., Jantti, R., & Seong-Lyun, K. (2001). A generalized algorithm for constrained power control with capability of temporary removal. IEEE Transactions on Vehicular Technology, 50(6), 1604–1612.CrossRef
48.
Zurück zum Zitat Fodor, G., Della Penda, D., Belleschi, M., Johansson, M., & Abrardo, A. (2013). A comparative study of power control approaches for device-to-device communications. In IEEE International Conference on Communications (ICC) (pp. 6008–6013). Fodor, G., Della Penda, D., Belleschi, M., Johansson, M., & Abrardo, A. (2013). A comparative study of power control approaches for device-to-device communications. In IEEE International Conference on Communications (ICC) (pp. 6008–6013).
49.
Zurück zum Zitat Yu, C. H., Tirkkonen, O., Doppler, K., & Ribeiro, C. (2009). Power optimization of device-to-device communication underlaying cellular communication. In 2009 IEEE international conference on communications (pp. 1–5). doi:10.1109/ICC.2009.5199353. Yu, C. H., Tirkkonen, O., Doppler, K., & Ribeiro, C. (2009). Power optimization of device-to-device communication underlaying cellular communication. In 2009 IEEE international conference on communications (pp. 1–5). doi:10.​1109/​ICC.​2009.​5199353.
50.
Zurück zum Zitat Xing, H., & Hakola, S. (2010). The investigation of power control schemes for a device-to-device communication integrated into OFDMA cellular system. In IEEE 21st international symposium on personal indoor and mobile radio communications (PIMRC), 2010. Xing, H., & Hakola, S. (2010). The investigation of power control schemes for a device-to-device communication integrated into OFDMA cellular system. In IEEE 21st international symposium on personal indoor and mobile radio communications (PIMRC), 2010.
51.
Zurück zum Zitat Zhou, Z., Dong, M., Ota, K., Shi, R., Liu, Z., & Sato, T. (2015). Game-theoretic approach to energy-efficient resource allocation in device-to-device underlay communications. IET Communications., 9(3), 375–385. doi:10.1049/iet-com.2014.0337.CrossRef Zhou, Z., Dong, M., Ota, K., Shi, R., Liu, Z., & Sato, T. (2015). Game-theoretic approach to energy-efficient resource allocation in device-to-device underlay communications. IET Communications., 9(3), 375–385. doi:10.​1049/​iet-com.​2014.​0337.CrossRef
52.
Zurück zum Zitat [11] Wang, F., Xu, C., Song, L., Han, Z., & Zhang, B. (2012). Energy efficient radio resource and power allocation for device-to-device communication underlaying cellular networks. In International conference on wireless communications and signal processing (WCSP), 2012, October 2012. [11] Wang, F., Xu, C., Song, L., Han, Z., & Zhang, B. (2012). Energy efficient radio resource and power allocation for device-to-device communication underlaying cellular networks. In International conference on wireless communications and signal processing (WCSP), 2012, October 2012.
53.
Zurück zum Zitat Zhu, Daohua, Wang, Jiaheng, & Swindlehurst, A. L. (2014). Downlink resource reuse for device-to-device communications underlaying cellular networks. IEEE Signal Processing Letters, 21(5), 531–54.CrossRef Zhu, Daohua, Wang, Jiaheng, & Swindlehurst, A. L. (2014). Downlink resource reuse for device-to-device communications underlaying cellular networks. IEEE Signal Processing Letters, 21(5), 531–54.CrossRef
54.
Zurück zum Zitat Janis, P., Chia-Hao, Y., Doppler, K., Ribeiro, C., Wijting, C., Hugl, K., et al. (2009). Device-to-device communication underlaying cellular communications systems. International Journal of Communications, Network and System Sciences, 2(03), 169–178.CrossRef Janis, P., Chia-Hao, Y., Doppler, K., Ribeiro, C., Wijting, C., Hugl, K., et al. (2009). Device-to-device communication underlaying cellular communications systems. International Journal of Communications, Network and System Sciences, 2(03), 169–178.CrossRef
55.
Zurück zum Zitat Janis, P., Koivunen, V., Cassio, R., Korhonen, J., Doppler, K., & Hugl, K. (2009). Interference-aware resource allocation for device-to-device radio underlaying cellular networks. In IEEE Vehicular Technology Conference (pp. 1–5). doi:10.1109/VETECS.2009.5073611. Janis, P., Koivunen, V., Cassio, R., Korhonen, J., Doppler, K., & Hugl, K. (2009). Interference-aware resource allocation for device-to-device radio underlaying cellular networks. In IEEE Vehicular Technology Conference (pp. 1–5). doi:10.​1109/​VETECS.​2009.​5073611.
56.
Zurück zum Zitat Gu, J., Bae, S. J., Hasan, S. F., & Chung, M. Y. (2013). A combined power control and resource allocation scheme for D2D communication underlaying an LTE-advanced system. IEICE Transactions on Communications, E96–B(10), 2683–2692.CrossRef Gu, J., Bae, S. J., Hasan, S. F., & Chung, M. Y. (2013). A combined power control and resource allocation scheme for D2D communication underlaying an LTE-advanced system. IEICE Transactions on Communications, E96–B(10), 2683–2692.CrossRef
57.
Zurück zum Zitat Myung, H. G., Lim, J., & Goodman, D. J. (2006). Single carrier FDMA for uplink wireless transmission. IEEE Vehicular Technology Magazine, 1(3), 3038.CrossRef Myung, H. G., Lim, J., & Goodman, D. J. (2006). Single carrier FDMA for uplink wireless transmission. IEEE Vehicular Technology Magazine, 1(3), 3038.CrossRef
58.
Zurück zum Zitat Syed, T. S., Gu, J., Hasan, S. F., & Chung, M. Y. (2015). SC-FDMA based resource allocation and power control scheme for D2D-communication using LTE-A uplink resource. EURASIP Journal on Wireless Communications and Networking, 2015(1), 137.CrossRef Syed, T. S., Gu, J., Hasan, S. F., & Chung, M. Y. (2015). SC-FDMA based resource allocation and power control scheme for D2D-communication using LTE-A uplink resource. EURASIP Journal on Wireless Communications and Networking, 2015(1), 137.CrossRef
59.
Zurück zum Zitat Gu, J., Yoon, H.-W., Lee, J., Bae, S. J., Chung, M. Y. (2015). A resource allocation scheme for device-to-device communications using LTE-A uplink resources. Pervasive and Mobile Computing, 18, 104–117. ISSN: 1574-1192. Gu, J., Yoon, H.-W., Lee, J., Bae, S. J., Chung, M. Y. (2015). A resource allocation scheme for device-to-device communications using LTE-A uplink resources. Pervasive and Mobile Computing, 18, 104–117. ISSN: 1574-1192.
60.
Zurück zum Zitat Yu, G., Xu, L., Feng, D., Yin, R., Li, G. Y., & Jiang, Y. (2014). Joint mode selection and resource allocation for device-to-device communications. IEEE Transactions on Communications, 62(11), 3814–3824.CrossRef Yu, G., Xu, L., Feng, D., Yin, R., Li, G. Y., & Jiang, Y. (2014). Joint mode selection and resource allocation for device-to-device communications. IEEE Transactions on Communications, 62(11), 3814–3824.CrossRef
61.
Zurück zum Zitat Zhu, K., & Hossain, E. (2015). Joint mode selection and spectrum partitioning for device-to-device communication: A dynamic Stackelberg game. IEEE Transactions on Wireless Communications, 14(3), 14061420.CrossRef Zhu, K., & Hossain, E. (2015). Joint mode selection and spectrum partitioning for device-to-device communication: A dynamic Stackelberg game. IEEE Transactions on Wireless Communications, 14(3), 14061420.CrossRef
62.
Zurück zum Zitat Wang, Q., Wang, W., Jin, S., Zhu, H., & Zhang, N. T. (2014). Mode selection for D2D communication underlaying a cellular network with shared relays. In 6th International conference on wireless communications and signal processing (WCSP) (pp. 1–6). October 23–25, 2014. doi:10.1109/WCSP.2014.6992132 Wang, Q., Wang, W., Jin, S., Zhu, H., & Zhang, N. T. (2014). Mode selection for D2D communication underlaying a cellular network with shared relays. In 6th International conference on wireless communications and signal processing (WCSP) (pp. 1–6). October 23–25, 2014. doi:10.​1109/​WCSP.​2014.​6992132
63.
Zurück zum Zitat Li, Y., Jin, D., Gao, F., & Zeng, L. (2014). Joint optimization for resource allocation and mode selection in device-to-device communication underlaying cellular networks. In IEEE international conference on communications (ICC), 2014 (pp. 2245–2250). June 10–14, 2014. doi:10.1109/ICC.2014.6883657. Li, Y., Jin, D., Gao, F., & Zeng, L. (2014). Joint optimization for resource allocation and mode selection in device-to-device communication underlaying cellular networks. In IEEE international conference on communications (ICC), 2014 (pp. 2245–2250). June 10–14, 2014. doi:10.​1109/​ICC.​2014.​6883657.
64.
Zurück zum Zitat Wen, S., Zhu, X., Zhang, X., & Yang, D. (2013). QoS-aware mode selection and resource allocation scheme for device-to-device (D2D) communication in cellular networks, In IEEE international conference on communication work, ICC, 2013 (pp. 101–105). Wen, S., Zhu, X., Zhang, X., & Yang, D. (2013). QoS-aware mode selection and resource allocation scheme for device-to-device (D2D) communication in cellular networks, In IEEE international conference on communication work, ICC, 2013 (pp. 101–105).
65.
Zurück zum Zitat Lei, L., Shen, X., Dohler, M., Lin, C., & Zhong, Z. (2014). Queuing models with applications to mode selection in device-to-device communications underlaying cellular networks. IEEE Transactions on Wireless Communications, 13(12), 6697–6715. doi:10.1109/TWC.2014.2335734.CrossRef Lei, L., Shen, X., Dohler, M., Lin, C., & Zhong, Z. (2014). Queuing models with applications to mode selection in device-to-device communications underlaying cellular networks. IEEE Transactions on Wireless Communications, 13(12), 6697–6715. doi:10.​1109/​TWC.​2014.​2335734.CrossRef
66.
Zurück zum Zitat Liu, J., Kawamoto, Y., Nishiyama, H., Kato, N., & Kadowaki, N. (2014). Device-to-device communications achieve efficient load balancing in LTE-advanced networks. IEEE Wireless Communications, 21(2), 57–65. doi:10.1109/MWC.2014.6812292.CrossRef Liu, J., Kawamoto, Y., Nishiyama, H., Kato, N., & Kadowaki, N. (2014). Device-to-device communications achieve efficient load balancing in LTE-advanced networks. IEEE Wireless Communications, 21(2), 57–65. doi:10.​1109/​MWC.​2014.​6812292.CrossRef
67.
Zurück zum Zitat Wu, X., Tavildar, S., Shakkottai, S., Richardson, T., Junyi, Li., Laroia, R., Jovicic, A. (2010). FlashLinQ: A synchronous distributed scheduler for peer-to-peer ad hoc networks. In 48th Annual Allerton conference on communication, control, and computing (Allerton), 2010 (pp. 514-521) 29 September, 2010–October 1, 2010. doi:10.1109/ALLERTON.2010.5706950. Wu, X., Tavildar, S., Shakkottai, S., Richardson, T., Junyi, Li., Laroia, R., Jovicic, A. (2010). FlashLinQ: A synchronous distributed scheduler for peer-to-peer ad hoc networks. In 48th Annual Allerton conference on communication, control, and computing (Allerton), 2010 (pp. 514-521) 29 September, 2010–October 1, 2010. doi:10.​1109/​ALLERTON.​2010.​5706950.
68.
Zurück zum Zitat Wu, X., Tavildar, S., Shakkottai, S., Richardson, T., Li, J., Laroia, R., et al. (2013). FlashLinQ: A synchronous distributed scheduler for peer-to-peer ad hoc networks. IEEE/ACM Transactions on Networking, 21(4), 1215–1228. doi:10.1109/TNET.2013.2264633.CrossRef Wu, X., Tavildar, S., Shakkottai, S., Richardson, T., Li, J., Laroia, R., et al. (2013). FlashLinQ: A synchronous distributed scheduler for peer-to-peer ad hoc networks. IEEE/ACM Transactions on Networking, 21(4), 1215–1228. doi:10.​1109/​TNET.​2013.​2264633.CrossRef
69.
Zurück zum Zitat Mehlfhrer, C., Colom Ikuno, J., Simko, M., Schwarz, S., Wrulich, M., & Rupp, M. (2011). The Vienna LTE simulators-Enabling reproducibility in wireless communications research. EURASIP Journal on Advances in Signal Processing, 2011, 1–13. Mehlfhrer, C., Colom Ikuno, J., Simko, M., Schwarz, S., Wrulich, M., & Rupp, M. (2011). The Vienna LTE simulators-Enabling reproducibility in wireless communications research. EURASIP Journal on Advances in Signal Processing, 2011, 1–13.
70.
Zurück zum Zitat Choi, B.-G., Kim, J. S., Shin, J., Park, A.-S., & Chung, M. Y. (2012). Development of a system-level simulator for evaluating performance of device-to-device communication underlaying LTE-advanced networks. In International conference on computational intelligence, modelling and simulation. Choi, B.-G., Kim, J. S., Shin, J., Park, A.-S., & Chung, M. Y. (2012). Development of a system-level simulator for evaluating performance of device-to-device communication underlaying LTE-advanced networks. In International conference on computational intelligence, modelling and simulation.
72.
Zurück zum Zitat Fodor, G., Dahlman, E., Mildh, G., Parkvall, S., Reider, N., Mikls, G., et al. (2012). Design aspects of network assisted device-to-device communications. IEEE Communications Magazine, 50(3), 170–177.CrossRef Fodor, G., Dahlman, E., Mildh, G., Parkvall, S., Reider, N., Mikls, G., et al. (2012). Design aspects of network assisted device-to-device communications. IEEE Communications Magazine, 50(3), 170–177.CrossRef
73.
Zurück zum Zitat Chao, S. L., Lee, H. Y., Chou, C. C., & Wei, H. Y. (2013). Bio-inspired proximity discovery and synchronization for D2D communications. IEEE Communications Letters, 17(12), 23002303.CrossRef Chao, S. L., Lee, H. Y., Chou, C. C., & Wei, H. Y. (2013). Bio-inspired proximity discovery and synchronization for D2D communications. IEEE Communications Letters, 17(12), 23002303.CrossRef
74.
Zurück zum Zitat Huang, P. K., Qi, E., Park, M., & Stephens, A. (2013). Energy efficient and scalable device-to-device discovery protocol with fast discovery. IEEE international work on internet-of-things networks control (IoT-NC), 2013 (p. 19). Huang, P. K., Qi, E., Park, M., & Stephens, A. (2013). Energy efficient and scalable device-to-device discovery protocol with fast discovery. IEEE international work on internet-of-things networks control (IoT-NC), 2013 (p. 19).
75.
Zurück zum Zitat Hong, J., Park, S., & Choi, S. (2014). Neighbor device-assisted beacon collision detection scheme for D2D discovery. In International conference on information and communication technology convergence (ICTC), 2014, (pp. 369-370). October 22–24, 2014. doi:10.1109/ICTC.2014.6983157 Hong, J., Park, S., & Choi, S. (2014). Neighbor device-assisted beacon collision detection scheme for D2D discovery. In International conference on information and communication technology convergence (ICTC), 2014, (pp. 369-370). October 22–24, 2014. doi:10.​1109/​ICTC.​2014.​6983157
76.
Zurück zum Zitat 3GPP TS 23.303 V13.0.0. Technical specification group services and system aspects; Proximity-based services (ProSe). 3GPP TS 23.303 V13.0.0. Technical specification group services and system aspects; Proximity-based services (ProSe).
77.
Zurück zum Zitat Prasad, A., Kunz, A., Velev, G., Samdanis, K., & Song, J. S. (2014). Energy-efficient D2D discovery for proximity services in 3GPP LTE-advanced networks: ProSe discovery mechanisms. IEEE Vehicular Technology Magazine, 9(4), 40–50. doi:10.1109/MVT.2014.2360652.CrossRef Prasad, A., Kunz, A., Velev, G., Samdanis, K., & Song, J. S. (2014). Energy-efficient D2D discovery for proximity services in 3GPP LTE-advanced networks: ProSe discovery mechanisms. IEEE Vehicular Technology Magazine, 9(4), 40–50. doi:10.​1109/​MVT.​2014.​2360652.CrossRef
78.
Zurück zum Zitat Kim, J., Yang, J. R., & Kim, D. I. (2011). Optimal relaying strategy for UE relays. In 17th Asia-Pacific conference communication APCC 2011, October (pp. 192–196). Kim, J., Yang, J. R., & Kim, D. I. (2011). Optimal relaying strategy for UE relays. In 17th Asia-Pacific conference communication APCC 2011, October (pp. 192–196).
79.
Zurück zum Zitat Munir, D., Gu, J., & Chung, M. Y. (2014). Selection of UE relay considering QoS class for public safety services. In 20th Asia-Pacific conference communication on LTE-A network, APCC. Munir, D., Gu, J., & Chung, M. Y. (2014). Selection of UE relay considering QoS class for public safety services. In 20th Asia-Pacific conference communication on LTE-A network, APCC.
80.
Zurück zum Zitat Munir, D., Gu, J., Hasan, S. F., & Chung, M. Y. (2015). Reliable cooperative scheme for public safety services in LTE-A networks. In Transactions on emerging telecommunications technologies. December 2015. doi:10.1002/ett.3008. Munir, D., Gu, J., Hasan, S. F., & Chung, M. Y. (2015). Reliable cooperative scheme for public safety services in LTE-A networks. In Transactions on emerging telecommunications technologies. December 2015. doi:10.​1002/​ett.​3008.
81.
Zurück zum Zitat 3GPP TSG-RAN WG1 (R1-152778), Discussions on Relay UE selection and discovery 3GPP TSG-RAN WG1 (R1-152778), Discussions on Relay UE selection and discovery
82.
Zurück zum Zitat 3GPP TSG-RAN WG1 (R1-153414), Discussions on Relay UE selection and discovery 3GPP TSG-RAN WG1 (R1-153414), Discussions on Relay UE selection and discovery
84.
Zurück zum Zitat 3GPP TSG RAN WG4 Overview of 700 MHz band in the US. 3GPP TSG RAN WG4 Overview of 700 MHz band in the US.
85.
Zurück zum Zitat Doumi, T., Dolan, M. F., Tatesh, S., & Casati, A. (2013). LTE for public safety networks. IEEE Communications Magazine, 51, 106–112.CrossRef Doumi, T., Dolan, M. F., Tatesh, S., & Casati, A. (2013). LTE for public safety networks. IEEE Communications Magazine, 51, 106–112.CrossRef
86.
Zurück zum Zitat Access, Evolved Universal Terrestrial Radio. User Equipment (UE) radio transmission and reception, 3GPP Std. TS 36.101. Access, Evolved Universal Terrestrial Radio. User Equipment (UE) radio transmission and reception, 3GPP Std. TS 36.101.
87.
Zurück zum Zitat 3GPP RP-120362, Public Safety Broadband High Power UE for Band 14 (B14) for Region 2. 3GPP RP-120362, Public Safety Broadband High Power UE for Band 14 (B14) for Region 2.
88.
Zurück zum Zitat LRM, REPORT ITU-R M . 2014-1 Digital land mobile systems for dispatch traffic, 2014. LRM, REPORT ITU-R M . 2014-1 Digital land mobile systems for dispatch traffic, 2014.
89.
Zurück zum Zitat 3GPP TR 22.803, 3GPP TR 22.803 v 12.2.0. (2010). Feasibility study for proximity services (ProSe). 1(9). 2010. 3GPP TR 22.803, 3GPP TR 22.803 v 12.2.0. (2010). Feasibility study for proximity services (ProSe). 1(9). 2010.
90.
Zurück zum Zitat 3GPP TS 22.468, 3GPP TS 22.468 V13.0.0 Group Communication System Enablers for LTE (2014-12). 3GPP TS 22.468, 3GPP TS 22.468 V13.0.0 Group Communication System Enablers for LTE (2014-12).
91.
Zurück zum Zitat 3GPP TS 23.468, 3GPP TS 23.468 V13.1.0 Group Communication System Enablers for LTE (GCSE_LTE); Stage 2 (2015-06). 3GPP TS 23.468, 3GPP TS 23.468 V13.1.0 Group Communication System Enablers for LTE (GCSE_LTE); Stage 2 (2015-06).
92.
Zurück zum Zitat 3GPP TS 23.246, 3GPP TS 23.246 Multimedia broadcastmulticast service (MBMS), Architecture and functional description. 3GPP TS 23.246, 3GPP TS 23.246 Multimedia broadcastmulticast service (MBMS), Architecture and functional description.
93.
Zurück zum Zitat 3GPP TS 23.401, 3GPP TS 23.401 General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Network (E-UTRAN) access. 3GPP TS 23.401, 3GPP TS 23.401 General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Network (E-UTRAN) access.
94.
Zurück zum Zitat Nishiyama, H., Ito, M., & Kato, N. (2014). Relay-by-smartphone: Realizing multihop device-to-device communications. IEEE Communications Magazine, 52(4), 5665.CrossRef Nishiyama, H., Ito, M., & Kato, N. (2014). Relay-by-smartphone: Realizing multihop device-to-device communications. IEEE Communications Magazine, 52(4), 5665.CrossRef
95.
Zurück zum Zitat Pelusi, L., Passarella, A., & Conti, M. (2006). Opportunistic networking: Data forwarding in disconnected mobile ad hoc networks. IEEE Communications Magazine, 44(11), 134141.CrossRef Pelusi, L., Passarella, A., & Conti, M. (2006). Opportunistic networking: Data forwarding in disconnected mobile ad hoc networks. IEEE Communications Magazine, 44(11), 134141.CrossRef
96.
Zurück zum Zitat Fall, K., & Farrell, S. (2008). DTN: An architectural retrospective. IEEE Journal on Selected Areas in Communications, 26(5), 828836.CrossRef Fall, K., & Farrell, S. (2008). DTN: An architectural retrospective. IEEE Journal on Selected Areas in Communications, 26(5), 828836.CrossRef
97.
Zurück zum Zitat Sakano, T., Fadlullah, Z., Ngo, T., Nishiyama, H., Nakazawa, M., Adachi, F., et al. (2013). Disaster-resilient networking: A new vision based on movable and deployable resource units. IEEE Network, 27(4), 4046.CrossRef Sakano, T., Fadlullah, Z., Ngo, T., Nishiyama, H., Nakazawa, M., Adachi, F., et al. (2013). Disaster-resilient networking: A new vision based on movable and deployable resource units. IEEE Network, 27(4), 4046.CrossRef
98.
Zurück zum Zitat SP-150051—Work Item Description Study on LTE support for V2X services. SP-150051—Work Item Description Study on LTE support for V2X services.
99.
Zurück zum Zitat 3GPP TR 36.885 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Study on LTE-based V2X Services; (Release 14) 3GPP TR 36.885 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Study on LTE-based V2X Services; (Release 14)
100.
Zurück zum Zitat Vanganuru, K., & Ferrante, S., & Sternberg, G. (2012). System capacity and coverage of a cellular network with D2D mobile relays. In IEEE Military Communications Conference. Vanganuru, K., & Ferrante, S., & Sternberg, G. (2012). System capacity and coverage of a cellular network with D2D mobile relays. In IEEE Military Communications Conference.
101.
Zurück zum Zitat Saund, S., & Lambert, P. A. (2013). Proximity based games for mobile communication devices. US Patent: Patent Number: US8616975 B1, 31 December, 2013. Saund, S., & Lambert, P. A. (2013). Proximity based games for mobile communication devices. US Patent: Patent Number: US8616975 B1, 31 December, 2013.
102.
Zurück zum Zitat Peng, B., Peng, T., Liu, Z., Yang, Y., & Hu, C. (2013). Cluster-based multicast transmission for device-to-device (D2D) communication. In VTC Fall. Peng, B., Peng, T., Liu, Z., Yang, Y., & Hu, C. (2013). Cluster-based multicast transmission for device-to-device (D2D) communication. In VTC Fall.
103.
Zurück zum Zitat Kim, J., & Lee, H. (2015). Geographical proximity based target-group formation algorithm for D2D advertisement dissemination. In IEEE international conference on pervasive computing and communication workshops (PerCom Workshops), 2015 (pp. 272–275). March 23–27, 2015. doi:10.1109/PERCOMW.2015.7134045. Kim, J., & Lee, H. (2015). Geographical proximity based target-group formation algorithm for D2D advertisement dissemination. In IEEE international conference on pervasive computing and communication workshops (PerCom Workshops), 2015 (pp. 272–275). March 23–27, 2015. doi:10.​1109/​PERCOMW.​2015.​7134045.
104.
Zurück zum Zitat Study on architecture enhancements to support proximity services (ProSe) (Release 12), Sophia-Antipolis, France, 3GPP TR 23.703 v. 1.0.0, Dec. 2013 Study on architecture enhancements to support proximity services (ProSe) (Release 12), Sophia-Antipolis, France, 3GPP TR 23.703 v. 1.0.0, Dec. 2013
105.
Zurück zum Zitat Damnjanovic, A., Montojo, J., Wei, Y., Ji, T., Luo, T., Vajapeyam, M., et al. (2011). A survey on 3GPP heterogeneous networks. IEEE Wireless Communications, 18(3), 10–21.CrossRef Damnjanovic, A., Montojo, J., Wei, Y., Ji, T., Luo, T., Vajapeyam, M., et al. (2011). A survey on 3GPP heterogeneous networks. IEEE Wireless Communications, 18(3), 10–21.CrossRef
106.
Zurück zum Zitat Yeh, S.-P., Talwar, S., Wu, G., Himayat, N., & Johnsson, K. (2011). Capacity and coverage enhancement in heterogeneous networks. IEEE Wireless Communications, 18(3), 32–38.CrossRef Yeh, S.-P., Talwar, S., Wu, G., Himayat, N., & Johnsson, K. (2011). Capacity and coverage enhancement in heterogeneous networks. IEEE Wireless Communications, 18(3), 32–38.CrossRef
107.
Zurück zum Zitat Andrews, J. G., Claussen, H., Dohler, M., Rangan, S., & Reed, M. C. (2012). Femtocells: Past, present, and future. IEEE Journal on Selected Areas in Communications, 30(3), 497–508.CrossRef Andrews, J. G., Claussen, H., Dohler, M., Rangan, S., & Reed, M. C. (2012). Femtocells: Past, present, and future. IEEE Journal on Selected Areas in Communications, 30(3), 497–508.CrossRef
108.
Zurück zum Zitat Laya, A., Wang, Kun, Widaa, A. A., Alonso-Zarate, J., Markendahl, J., & Alonso, L. (2014). Device-to-device communications and small cells: Enabling spectrum reuse for dense networks. IEEE Wireless Communications, 21(4), 98–105. doi:10.1109/MWC.2014.6882301.CrossRef Laya, A., Wang, Kun, Widaa, A. A., Alonso-Zarate, J., Markendahl, J., & Alonso, L. (2014). Device-to-device communications and small cells: Enabling spectrum reuse for dense networks. IEEE Wireless Communications, 21(4), 98–105. doi:10.​1109/​MWC.​2014.​6882301.CrossRef
109.
Zurück zum Zitat Choi, S. K., Kim, W. J., Lee, H. S., & Kim, D. I. (2013). Interference forwarding for D2D based heterogeneous cellular networks. In IEEE/CIC international conference on communications in China (ICCC), 2013, pp. 130–134, Augest 12–14, 2013. doi:10.1109/ICCChina.2013.6671102 Choi, S. K., Kim, W. J., Lee, H. S., & Kim, D. I. (2013). Interference forwarding for D2D based heterogeneous cellular networks. In IEEE/CIC international conference on communications in China (ICCC), 2013, pp. 130–134, Augest 12–14, 2013. doi:10.​1109/​ICCChina.​2013.​6671102
110.
Zurück zum Zitat Sathya, V., Ramamurthy, A., Kumar., S. S., & Tamma, B. R. (2016). On improving SINR in LTE HetNets with D2D relays. Computer Communications, 83(1), pp. 27–44. ISSN: 0140-3664. Sathya, V., Ramamurthy, A., Kumar., S. S., & Tamma, B. R. (2016). On improving SINR in LTE HetNets with D2D relays. Computer Communications, 83(1), pp. 27–44. ISSN: 0140-3664.
111.
Zurück zum Zitat Sui, Y., Vihrl, J., Papadogiannis, A., Sternad, M., & Svensson, T. (2013). Moving cells: A promising solution to boost performance for vehicular users. IEEE Communications Magazine, 51, 6268. doi:10.1109/MCOM.2013.6525596.CrossRef Sui, Y., Vihrl, J., Papadogiannis, A., Sternad, M., & Svensson, T. (2013). Moving cells: A promising solution to boost performance for vehicular users. IEEE Communications Magazine, 51, 6268. doi:10.​1109/​MCOM.​2013.​6525596.CrossRef
112.
Zurück zum Zitat Munir, D., Shah, S. T., Lee, W. Jin, H., Syed F., & Chung, M. Y. (2016). Selection of relay UE with energy harvesting capabilities in public safety environment. In Proceedings of the 30th international conference on information networking (ICOIN ) 2016, (p. 6). Munir, D., Shah, S. T., Lee, W. Jin, H., Syed F., & Chung, M. Y. (2016). Selection of relay UE with energy harvesting capabilities in public safety environment. In Proceedings of the 30th international conference on information networking (ICOIN ) 2016, (p. 6).
113.
Zurück zum Zitat Shah, S. T., Choi, K. W., Hasan, S. F., & Chung, M. Y. (2016). Energy harvesting and information processing in two-way multiplicative relay networks. In Electronics Letters, 52(9), 751–753. doi:10.1049/el.2015.3682. Shah, S. T., Choi, K. W., Hasan, S. F., & Chung, M. Y. (2016). Energy harvesting and information processing in two-way multiplicative relay networks. In Electronics Letters, 52(9), 751–753. doi:10.​1049/​el.​2015.​3682.
114.
Zurück zum Zitat Shah, S. T., Munir, D., Chung, M. Y., & Choi, K. W. (2016). Information processing and wireless energy harvesting in two-way amplify-and-forward relay networks. In IEEE 83rd Vehicular Technology Conference (VTC Spring), Nanjing (pp. 1–5). doi:10.1109/VTCSpring.2016.7504290. Shah, S. T., Munir, D., Chung, M. Y., & Choi, K. W. (2016). Information processing and wireless energy harvesting in two-way amplify-and-forward relay networks. In IEEE 83rd Vehicular Technology Conference (VTC Spring), Nanjing (pp. 1–5). doi:10.​1109/​VTCSpring.​2016.​7504290.
115.
Zurück zum Zitat Shah, Syed Tariq, Choi, Kae Won, Hasan, Syed Faraz, & Chung, Min Young. (2016). Throughput analysis of two-way relay networks with wireless energy harvesting capabilities. Ad Hoc Networks, 53(15), 123–131. doi:10.1016/j.adhoc.2016.09.024.CrossRef Shah, Syed Tariq, Choi, Kae Won, Hasan, Syed Faraz, & Chung, Min Young. (2016). Throughput analysis of two-way relay networks with wireless energy harvesting capabilities. Ad Hoc Networks, 53(15), 123–131. doi:10.​1016/​j.​adhoc.​2016.​09.​024.CrossRef
116.
Zurück zum Zitat Yilmaz, O. N. C. et al. (2014). Smart mobility management for D2D communications in 5G networks. In Wireless communications and networking conference workshops (WCNCW), 2014 IEEE, Istanbul (pp. 219–223). doi:10.1109/WCNCW.2014.6934889. Yilmaz, O. N. C. et al. (2014). Smart mobility management for D2D communications in 5G networks. In Wireless communications and networking conference workshops (WCNCW), 2014 IEEE, Istanbul (pp. 219–223). doi:10.​1109/​WCNCW.​2014.​6934889.
122.
Zurück zum Zitat Rappaport, T. S., Sun, S., Mayzus, R., Zhao, H., Azar, Y., Wang, K., et al. (2013). Millimeter wave mobile communications for 5G cellular: It will work!. In IEEE Access, 1, 335–349. doi:10.1109/ACCESS.2013.2260813. Rappaport, T. S., Sun, S., Mayzus, R., Zhao, H., Azar, Y., Wang, K., et al. (2013). Millimeter wave mobile communications for 5G cellular: It will work!. In IEEE Access, 1, 335–349. doi:10.​1109/​ACCESS.​2013.​2260813.
123.
Zurück zum Zitat Qiao, J., Shen, X., Mark, J., Shen, Q., He, Y., & Lei, L. (2015). Enabling device-to-device communications in millimeter-wave 5G cellular networks. IEEE Communications Magazine, 53(1), 209–215. doi:10.1109/MCOM.2015.7010536.CrossRef Qiao, J., Shen, X., Mark, J., Shen, Q., He, Y., & Lei, L. (2015). Enabling device-to-device communications in millimeter-wave 5G cellular networks. IEEE Communications Magazine, 53(1), 209–215. doi:10.​1109/​MCOM.​2015.​7010536.CrossRef
Metadaten
Titel
Device-to-Device Communications: A Contemporary Survey
verfasst von
Syed Tariq Shah
Syed Faraz Hasan
Boon-Chong Seet
Peter Han Joo Chong
Min Young Chung
Publikationsdatum
23.08.2017
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 1/2018
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-017-4918-4

Weitere Artikel der Ausgabe 1/2018

Wireless Personal Communications 1/2018 Zur Ausgabe