Skip to main content
Erschienen in: Wireless Personal Communications 4/2017

14.08.2017

Software Defined Wireless Networks: A Survey of Issues and Solutions

verfasst von: Anil Kumar Rangisetti, Bheemarjuna Reddy Tamma

Erschienen in: Wireless Personal Communications | Ausgabe 4/2017

Einloggen

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

search-config
loading …

Abstract

Wireless networks such as mobile networks, with their inflexible and expensive network infrastructure, are facing various challenges in efficiently handling the exponentially growing traffic demands of users. Hence, mobile network operators (MNOs) are looking forward to novel networking paradigms which could simplify the task of network management and control and allow faster deployment of newer solutions on top of existing hardware by software updates. Software defined networking (SDN) is a revolutionary technology which makes networks more agile and flexible by separation of data plane and control plane tasks. SDN is playing a key role in deploying mobile network services on network function virtualization (NFV) infrastructure for elastic and flexible deployment of core network services e.g., virtualization of evolved packet core in LTE to efficiently handle huge control signal overhead and traffic demands from machine-to-machine and internet of things devices. Besides, NFV and SDN are offering scalable, flexible and adaptable network service chaining platforms as a replacement for inflexible middleboxes. Mobile edge computing (MEC) is a new evolving platform which brings together IT services and cloud computing for offering end-users network aware services and solutions. In this survey, we enumerate numerous issues and challenges in designing SDN based wireless networks and review various SDN based seminal solutions for 4G/5G. Finally, this survey presents the role of SDN, NFV and MEC in designing 5G networks.

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
1.
Zurück zum Zitat Feamster, N., Rexford, J., & Zegura, E. (2014). The road to SDN: an intellectual history of programmable networks. ACM SIGCOMM Computer Communication Review, 44(2), 87–98.CrossRef Feamster, N., Rexford, J., & Zegura, E. (2014). The road to SDN: an intellectual history of programmable networks. ACM SIGCOMM Computer Communication Review, 44(2), 87–98.CrossRef
2.
Zurück zum Zitat McKeown, N., Anderson, T., Balakrishnan, H., Parulkar, G., Peterson, L., Rexford, J., et al. (2008). Openflow: enabling innovation in campus networks. ACM SIGCOMM Computer Communication Review, 38(2), 69–74.CrossRef McKeown, N., Anderson, T., Balakrishnan, H., Parulkar, G., Peterson, L., Rexford, J., et al. (2008). Openflow: enabling innovation in campus networks. ACM SIGCOMM Computer Communication Review, 38(2), 69–74.CrossRef
3.
Zurück zum Zitat Yu, M., Rexford, J., Freedman, M. J., & Wang, J. (2011). Scalable flow-based networking with difane. ACM SIGCOMM Computer Communication Review, 41(4), 351–362. Yu, M., Rexford, J., Freedman, M. J., & Wang, J. (2011). Scalable flow-based networking with difane. ACM SIGCOMM Computer Communication Review, 41(4), 351–362.
9.
Zurück zum Zitat Li, L. E., Mao, Z. M. & Rexford, J. (2012). Toward software-defined cellular networks. In 2012 European Workshop on Software Defined Networking (EWSDN) (pp. 7–12). IEEE Li, L. E., Mao, Z. M. & Rexford, J. (2012). Toward software-defined cellular networks. In 2012 European Workshop on Software Defined Networking (EWSDN) (pp. 7–12). IEEE
10.
Zurück zum Zitat Qazi, Z. A., Tu, C.-C., Chiang, L., Miao, R., Sekar, V., & Yu, M. (2013). Simple-fying middlebox policy enforcement using SDN. ACM SIGCOMM Computer Communication Review, 43(4), 27–38.CrossRef Qazi, Z. A., Tu, C.-C., Chiang, L., Miao, R., Sekar, V., & Yu, M. (2013). Simple-fying middlebox policy enforcement using SDN. ACM SIGCOMM Computer Communication Review, 43(4), 27–38.CrossRef
11.
Zurück zum Zitat Kreutz, D., Ramos, F. M., Esteves Verissimo, P., Esteve Rothenberg, C., Azodolmolky, S., & Uhlig, S. (2015). Software-defined networking: A comprehensive survey. Proceedings of the IEEE, 103(1), 14–76.CrossRef Kreutz, D., Ramos, F. M., Esteves Verissimo, P., Esteve Rothenberg, C., Azodolmolky, S., & Uhlig, S. (2015). Software-defined networking: A comprehensive survey. Proceedings of the IEEE, 103(1), 14–76.CrossRef
12.
Zurück zum Zitat Lara, A., Kolasani, A., & Ramamurthy, B. (2014). Network innovation using openflow: A survey. IEEE Communications Surveys & Tutorials, 16(1), 493–512.CrossRef Lara, A., Kolasani, A., & Ramamurthy, B. (2014). Network innovation using openflow: A survey. IEEE Communications Surveys & Tutorials, 16(1), 493–512.CrossRef
13.
Zurück zum Zitat Nunes, B., Mendonca, M., Nguyen, X.-N., Obraczka, K., Turletti, T., et al. (2014). A survey of software-defined networking: Past, present, and future of programmable networks. IEEE Communications Surveys & Tutorials, 16(3), 1617–1634.CrossRef Nunes, B., Mendonca, M., Nguyen, X.-N., Obraczka, K., Turletti, T., et al. (2014). A survey of software-defined networking: Past, present, and future of programmable networks. IEEE Communications Surveys & Tutorials, 16(3), 1617–1634.CrossRef
14.
Zurück zum Zitat Faigl, Z., & Bokor, L. (2015). Survey of traffic management in software defined mobile networks. Software Defined Mobile Networks (SDMN): Beyond LTE Network Architecture, pp. 189–207. Faigl, Z., & Bokor, L. (2015). Survey of traffic management in software defined mobile networks. Software Defined Mobile Networks (SDMN): Beyond LTE Network Architecture, pp. 189–207.
15.
Zurück zum Zitat Jin, X., Li, L. E., Vanbever, L., & Rexford, J. (2013). Softcell: Scalable and flexible cellular core network architecture. In Proceedings of the ninth ACM conference on emerging networking experiments and technologies (pp. 163–174). ACM. Jin, X., Li, L. E., Vanbever, L., & Rexford, J. (2013). Softcell: Scalable and flexible cellular core network architecture. In Proceedings of the ninth ACM conference on emerging networking experiments and technologies (pp. 163–174). ACM.
16.
Zurück zum Zitat Nagaraj, K., & Katti, S. (2014). Procel: Smart traffic handling for a scalable software epc. In Proceedings of the third workshop on hot topics in software defined networking (pp. 43–48). ACM. Nagaraj, K., & Katti, S. (2014). Procel: Smart traffic handling for a scalable software epc. In Proceedings of the third workshop on hot topics in software defined networking (pp. 43–48). ACM.
17.
Zurück zum Zitat Said, S. B. H., Sama, M. R., Guillouard, K., Suciu, L., Simon, G., Lagrange, X., & Bonnin, J.-M. (2013). New control plane in 3gpp LTE/EPC architecture for on-demand connectivity service. In 2013 IEEE 2nd international conference on cloud networking (CloudNet) (pp. 205–209). IEEE Said, S. B. H., Sama, M. R., Guillouard, K., Suciu, L., Simon, G., Lagrange, X., & Bonnin, J.-M. (2013). New control plane in 3gpp LTE/EPC architecture for on-demand connectivity service. In 2013 IEEE 2nd international conference on cloud networking (CloudNet) (pp. 205–209). IEEE
18.
Zurück zum Zitat Moradi, M., Wu, W., Li, L. E., & Mao, Z. M. (2014). Softmow: Recursive and reconfigurable cellular wan architecture. In Proceedings of the 10th ACM international on conference on emerging networking experiments and technologies (pp. 377–390). ACM Moradi, M., Wu, W., Li, L. E., & Mao, Z. M. (2014). Softmow: Recursive and reconfigurable cellular wan architecture. In Proceedings of the 10th ACM international on conference on emerging networking experiments and technologies (pp. 377–390). ACM
19.
Zurück zum Zitat Cho, J., Nguyen, B., Banerjee, A., Ricci, R., Van der Merwe, J., & Webb, K. (2014). Smore: Software-defined networking mobile offloading architecture. In Proceedings of the 4th workshop on all things cellular: Operations, applications, & challenges (pp. 21–26). ACM. Cho, J., Nguyen, B., Banerjee, A., Ricci, R., Van der Merwe, J., & Webb, K. (2014). Smore: Software-defined networking mobile offloading architecture. In Proceedings of the 4th workshop on all things cellular: Operations, applications, & challenges (pp. 21–26). ACM.
20.
Zurück zum Zitat Pentikousis, K., Wang, Y., & Hu, W. (2013). Mobileflow: Toward software-defined mobile networks. IEEE Communications Magazine, 51(7), 44–53.CrossRef Pentikousis, K., Wang, Y., & Hu, W. (2013). Mobileflow: Toward software-defined mobile networks. IEEE Communications Magazine, 51(7), 44–53.CrossRef
21.
Zurück zum Zitat Gudipati, A., Perry, D., Li, L. E., & Katti, S. (2013). Softran: Software defined radio access network. In Proceedings of the second ACM SIGCOMM workshop on hot topics in software defined networking (pp. 25–30). ACM. Gudipati, A., Perry, D., Li, L. E., & Katti, S. (2013). Softran: Software defined radio access network. In Proceedings of the second ACM SIGCOMM workshop on hot topics in software defined networking (pp. 25–30). ACM.
22.
Zurück zum Zitat Katti, S., & Li, L. E. (2014). Radiovisor: A slicing plane for radio access networks. Presented as part of the Open Networking Summit 2014 (ONS 2014). Katti, S., & Li, L. E. (2014). Radiovisor: A slicing plane for radio access networks. Presented as part of the Open Networking Summit 2014 (ONS 2014).
23.
Zurück zum Zitat Chen, T., Zhang, H., Chen, X., & Tirkkonen, O. (2014). Softmobile: control evolution for future heterogeneous mobile networks. IEEE Wireless Communications, 21(6), 70–78.CrossRef Chen, T., Zhang, H., Chen, X., & Tirkkonen, O. (2014). Softmobile: control evolution for future heterogeneous mobile networks. IEEE Wireless Communications, 21(6), 70–78.CrossRef
24.
Zurück zum Zitat Tan, W., Zhang, J., Peng, C., Xia, B., & Kou, Y. (2014). SDN-enabled converged networks. IEEE Wireless Communications, 21(6), 79–85.CrossRef Tan, W., Zhang, J., Peng, C., Xia, B., & Kou, Y. (2014). SDN-enabled converged networks. IEEE Wireless Communications, 21(6), 79–85.CrossRef
25.
Zurück zum Zitat Casado, M., Freedman, M. J., Pettit, J., Luo, J., McKeown, N., & Shenker, S. (2007). Ethane: taking control of the enterprise. ACM SIGCOMM Computer Communication Review, 37(4), 1–12.CrossRef Casado, M., Freedman, M. J., Pettit, J., Luo, J., McKeown, N., & Shenker, S. (2007). Ethane: taking control of the enterprise. ACM SIGCOMM Computer Communication Review, 37(4), 1–12.CrossRef
26.
Zurück zum Zitat Nayak, A. K., Reimers, A., Feamster, N., Clark, R. (2009). Resonance: Dynamic access control for enterprise networks. In Proceedings of the 1st ACM workshop on research on enterprise networking (pp. 11–18). ACM. Nayak, A. K., Reimers, A., Feamster, N., Clark, R. (2009). Resonance: Dynamic access control for enterprise networks. In Proceedings of the 1st  ACM workshop on research on enterprise networking (pp. 11–18). ACM.
27.
Zurück zum Zitat Mehdi, S. A., Khalid, J., Khayam, S. A. (2011). Revisiting traffic anomaly detection using software defined networking. In International workshop on recent advances in intrusion detection (pp. 161–180). Springer. Mehdi, S. A., Khalid, J., Khayam, S. A. (2011). Revisiting traffic anomaly detection using software defined networking. In International workshop on recent advances in intrusion detection (pp. 161–180). Springer.
28.
Zurück zum Zitat Jafarian, J. H., Al-Shaer, E., & Duan, Q. (2012). Openflow random host mutation: Transparent moving target defense using software defined networking. In Proceedings of the first workshop on hot topics in software defined networks (pp. 127–132). ACM. Jafarian, J. H., Al-Shaer, E., & Duan, Q. (2012). Openflow random host mutation: Transparent moving target defense using software defined networking. In Proceedings of the first workshop on hot topics in software defined networks (pp. 127–132). ACM.
29.
Zurück zum Zitat Wang, Y., Zhang, Y., Singh, V., Lumezanu, C., & Jiang, G. (2013). Netfuse: Short-circuiting traffic surges in the cloud. In 2013 IEEE international conference on communications (ICC) (pp. 3514–3518). IEEE. Wang, Y., Zhang, Y., Singh, V., Lumezanu, C., & Jiang, G. (2013). Netfuse: Short-circuiting traffic surges in the cloud. In 2013 IEEE international conference on communications (ICC) (pp. 3514–3518). IEEE.
30.
Zurück zum Zitat Shin, S., & Gu, G. (2012). Cloudwatcher: Network security monitoring using openflow in dynamic cloud networks (or: How to provide security monitoring as a service in clouds?). In: 2012 20th IEEE international conference on network protocols (ICNP) (pp. 1–6). IEEE. Shin, S., & Gu, G. (2012). Cloudwatcher: Network security monitoring using openflow in dynamic cloud networks (or: How to provide security monitoring as a service in clouds?). In: 2012 20th IEEE international conference on network protocols (ICNP) (pp. 1–6). IEEE.
31.
Zurück zum Zitat Shin, S., Yegneswaran, V., Porras, P., Gu, G. (2013). Avant-guard: Scalable and vigilant switch flow management in software-defined networks. In Proceedings of the 2013 ACM SIGSAC conference on computer & communications security (pp. 413–424). ACM. Shin, S., Yegneswaran, V., Porras, P., Gu, G. (2013). Avant-guard: Scalable and vigilant switch flow management in software-defined networks. In Proceedings of the 2013 ACM SIGSAC conference on computer & communications security (pp. 413–424). ACM.
32.
Zurück zum Zitat Shin, S., Porras, P. A., Yegneswaran, V., Fong, M. W., Gu, G., & Tyson, M. (2013). Fresco: Modular composable security services for software-defined networks. In NDSS. Shin, S., Porras, P. A., Yegneswaran, V., Fong, M. W., Gu, G., & Tyson, M. (2013). Fresco: Modular composable security services for software-defined networks. In NDSS.
33.
Zurück zum Zitat Zhang, Y. (2013). An adaptive flow counting method for anomaly detection in SDN. In Proceedings of the ninth ACM conference on emerging networking experiments and technologies (pp. 25–30). ACM. Zhang, Y. (2013). An adaptive flow counting method for anomaly detection in SDN. In Proceedings of the ninth ACM conference on emerging networking experiments and technologies (pp. 25–30). ACM.
34.
Zurück zum Zitat Heorhiadi, V., Reiter, M. K., & Sekar, V. (2012). New opportunities for load balancing in network-wide intrusion detection systems. In Proceedings of the 8th international conference on emerging networking experiments and technologies (pp. 361–372). ACM. Heorhiadi, V., Reiter, M. K., & Sekar, V. (2012). New opportunities for load balancing in network-wide intrusion detection systems. In Proceedings of the 8th international conference on emerging networking experiments and technologies (pp. 361–372). ACM.
35.
Zurück zum Zitat Shirali-Shahreza, S., & Ganjali, Y. (2013). Efficient implementation of security applications in openflow controller with flexam. In 2013 IEEE 21st annual symposium on high-performance interconnects (pp. 49–54). IEEE. Shirali-Shahreza, S., & Ganjali, Y. (2013). Efficient implementation of security applications in openflow controller with flexam. In 2013 IEEE 21st annual symposium on high-performance interconnects (pp. 49–54). IEEE.
36.
Zurück zum Zitat Kreutz, D., Ramos, F., & Verissimo, P. (2013). Towards secure and dependable software-defined networks. In Proceedings of the second ACM SIGCOMM workshop on hot topics in software defined networking (pp. 55–60). ACM. Kreutz, D., Ramos, F., & Verissimo, P. (2013). Towards secure and dependable software-defined networks. In Proceedings of the second ACM SIGCOMM workshop on hot topics in software defined networking (pp. 55–60). ACM.
37.
Zurück zum Zitat Scott-Hayward, S., O’Callaghan, G., & Sezer, S. (2013). SDN security: A survey. In Future Networks and Services (SDN4FNS), 2013 IEEE SDN For (pp. 1–7). IEEE. Scott-Hayward, S., O’Callaghan, G., & Sezer, S. (2013). SDN security: A survey. In Future Networks and Services (SDN4FNS), 2013 IEEE SDN For (pp. 1–7). IEEE.
38.
Zurück zum Zitat Yan, Z., Zhang, P., & Vasilakos, A. V. (2015). A security and trust framework for virtualized networks and software-defined networking. Security and Communication Networks, 9, 3059–3069.CrossRef Yan, Z., Zhang, P., & Vasilakos, A. V. (2015). A security and trust framework for virtualized networks and software-defined networking. Security and Communication Networks, 9, 3059–3069.CrossRef
39.
Zurück zum Zitat Chen, M., Qian, Y., Mao, S., Tang, W., & Yang, X. (2016). “Software-defined mobile networks security,” Mobile Networks and Applications, pp. 1–15. Chen, M., Qian, Y., Mao, S., Tang, W., & Yang, X. (2016). “Software-defined mobile networks security,” Mobile Networks and Applications, pp. 1–15.
40.
Zurück zum Zitat Liyanage, M., Ylianttila, M., & Gurtov, A. (2014). Securing the control channel of software-defined mobile networks. In 2014 IEEE 15th international symposium on a world of wireless, mobile and multimedia networks (WoWMoM) (pp. 1–6). IEEE. Liyanage, M., Ylianttila, M., & Gurtov, A. (2014). Securing the control channel of software-defined mobile networks. In 2014 IEEE 15th international symposium on a world of wireless, mobile and multimedia networks (WoWMoM) (pp. 1–6). IEEE.
41.
Zurück zum Zitat Ding, A. Y., Crowcroft, J., Tarkoma, S., & Flinck, H. (2014). Software defined networking for security enhancement in wireless mobile networks. Computer Networks, 66, 94–101.CrossRef Ding, A. Y., Crowcroft, J., Tarkoma, S., & Flinck, H. (2014). Software defined networking for security enhancement in wireless mobile networks. Computer Networks, 66, 94–101.CrossRef
42.
Zurück zum Zitat Botelho, F., Bessani, A., Ramos, F. M., Ferreira, P. (2014). On the design of practical fault-tolerant SDN controllers. In 2014 third European workshop on software defined networks (pp. 73–78). IEEE. Botelho, F., Bessani, A., Ramos, F. M., Ferreira, P. (2014). On the design of practical fault-tolerant SDN controllers. In 2014 third European workshop on software defined networks (pp. 73–78). IEEE.
43.
Zurück zum Zitat Chandrasekaran, B., & Benson, T. (2014). Tolerating SDN application failures with legosdn. In Proceedings of the 13th ACM workshop on hot topics in networks (p. 22). ACM. Chandrasekaran, B., & Benson, T. (2014). Tolerating SDN application failures with legosdn. In Proceedings of the 13th ACM workshop on hot topics in networks (p. 22). ACM.
44.
Zurück zum Zitat Katta, N., Zhang, H., Freedman, M., & Rexford, J. (2015). Ravana: Controller fault-tolerance in software-defined networking. In Proceedings of the 1st ACM SIGCOMM symposium on software defined networking research (p. 4). ACM. Katta, N., Zhang, H., Freedman, M., & Rexford, J. (2015). Ravana: Controller fault-tolerance in software-defined networking. In Proceedings of the 1st ACM SIGCOMM symposium on software defined networking research (p. 4). ACM.
45.
Zurück zum Zitat Kim, H., Schlansker, M., Santos, J. R., Tourrilhes, J., Turner, Y., & Feamster, N. (2012). Coronet: Fault tolerance for software defined networks. In 2012 20th IEEE international conference on network protocols (ICNP) (pp. 1–2). IEEE. Kim, H., Schlansker, M., Santos, J. R., Tourrilhes, J., Turner, Y., & Feamster, N. (2012). Coronet: Fault tolerance for software defined networks. In 2012 20th IEEE international conference on network protocols (ICNP) (pp. 1–2). IEEE.
46.
Zurück zum Zitat McCauley, J., Liu, Z., Panda, A., Koponen, T., Raghavan, B., Rexford, J., & Shenker, S. (2016). Recursive SDN for carrier networks. arXiv preprint arXiv:1605.07734. McCauley, J., Liu, Z., Panda, A., Koponen, T., Raghavan, B., Rexford, J., & Shenker, S. (2016). Recursive SDN for carrier networks. arXiv preprint arXiv:​1605.​07734.
47.
Zurück zum Zitat Reitblatt, M., Canini, M., Guha, A., & Foster, N. (2013). Fattire: Declarative fault tolerance for software-defined networks. In Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking (pp. 109–114). ACM. Reitblatt, M., Canini, M., Guha, A., & Foster, N. (2013). Fattire: Declarative fault tolerance for software-defined networks. In Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking (pp. 109–114). ACM.
48.
Zurück zum Zitat Agyapong, P., Iwamura, M., Staehle, D., Kiess, W., & Benjebbour, A. (2014). Design considerations for a 5g network architecture. IEEE Communications Magazine, 52(11), 65–75.CrossRef Agyapong, P., Iwamura, M., Staehle, D., Kiess, W., & Benjebbour, A. (2014). Design considerations for a 5g network architecture. IEEE Communications Magazine, 52(11), 65–75.CrossRef
49.
Zurück zum Zitat ETSI, N. (2013). Network functions virtualisation (NFV) architectural framework. ETSI GS NFV, 2(2), V1. ETSI, N. (2013). Network functions virtualisation (NFV) architectural framework. ETSI GS NFV, 2(2), V1.
50.
Zurück zum Zitat Han, B., Gopalakrishnan, V., Ji, L., & Lee, S. (2015). Network function virtualization: Challenges and opportunities for innovations. IEEE Communications Magazine, 53(2), 90–97.CrossRef Han, B., Gopalakrishnan, V., Ji, L., & Lee, S. (2015). Network function virtualization: Challenges and opportunities for innovations. IEEE Communications Magazine, 53(2), 90–97.CrossRef
51.
Zurück zum Zitat Gember-Jacobson, A., Viswanathan, R., Prakash, C., Grandl, R., Khalid, J., Das, S., et al. (2015). Opennf: Enabling innovation in network function control. ACM SIGCOMM Computer Communication Review, 44(4), 163–174.CrossRef Gember-Jacobson, A., Viswanathan, R., Prakash, C., Grandl, R., Khalid, J., Das, S., et al. (2015). Opennf: Enabling innovation in network function control. ACM SIGCOMM Computer Communication Review, 44(4), 163–174.CrossRef
56.
Zurück zum Zitat Basta, A., Kellerer, W., Hoffmann, M., Hoffmann, K., & Schmidt, E.-D. (2013). A virtual SDN-enabled LTE EPC architecture: A case study for s-/p-gateways functions. In Future Networks and Services (SDN4FNS), 2013 IEEE SDN for (pp. 1–7). IEEE. Basta, A., Kellerer, W., Hoffmann, M., Hoffmann, K., & Schmidt, E.-D. (2013). A virtual SDN-enabled LTE EPC architecture: A case study for s-/p-gateways functions. In Future Networks and Services (SDN4FNS), 2013 IEEE SDN for (pp. 1–7). IEEE.
57.
Zurück zum Zitat Costa-Requena, J., Llorente Santos, J., Ferrer Guasch, V., Ahokas, K., Premsankar, G., Luukkainen, S., Ahmad, I., Liyanage, M., Ylianttila, M., & Lopez Perez, O., et al. (2015). SDN and NFV integration in generalized mobile network architecture. In 2015 European conference on networks and communications (EuCNC) (pp. 154–158). IEEE. Costa-Requena, J., Llorente Santos, J., Ferrer Guasch, V., Ahokas, K., Premsankar, G., Luukkainen, S., Ahmad, I., Liyanage, M., Ylianttila, M., & Lopez Perez, O., et al. (2015). SDN and NFV integration in generalized mobile network architecture. In 2015 European conference on networks and communications (EuCNC) (pp. 154–158). IEEE.
58.
Zurück zum Zitat Hawilo, H., Shami, A., Mirahmadi, M., & Asal, R. (2014). NFV: state of the art, challenges, and implementation in next generation mobile networks (vepc). IEEE Network, 28(6), 18–26.CrossRef Hawilo, H., Shami, A., Mirahmadi, M., & Asal, R. (2014). NFV: state of the art, challenges, and implementation in next generation mobile networks (vepc). IEEE Network, 28(6), 18–26.CrossRef
59.
Zurück zum Zitat Cannistra, R., Carle, B., Johnson, M., Kapadia, J., Meath, Z., Miller, M., et al. (2004). Enabling autonomic provisioning in SDN cloud networks with NFY service chaining. In Optical Fiber Communication Conference (pp. Tu2I–4). Optical Society of America. Cannistra, R., Carle, B., Johnson, M., Kapadia, J., Meath, Z., Miller, M., et al. (2004). Enabling autonomic provisioning in SDN cloud networks with NFY service chaining. In Optical Fiber Communication Conference (pp. Tu2I–4). Optical Society of America.
60.
Zurück zum Zitat John, W., Pentikousis, K., Agapiou, G., Jacob, E., Kind, M., Manzalini, A., et al. (2013). Research directions in network service chaining. In 2013 IEEE SDN for future networks and services (SDN4FNS) (pp. 1–7). IEEE. John, W., Pentikousis, K., Agapiou, G., Jacob, E., Kind, M., Manzalini, A., et al. (2013). Research directions in network service chaining. In 2013 IEEE SDN for future networks and services (SDN4FNS) (pp. 1–7). IEEE.
61.
Zurück zum Zitat Leymann, N., AG, D. T. (2013). “Flexible service chaining. requirements and architectures.,” In EWSDN: European Workshop on Software Defined Networks. Leymann, N., AG, D. T. (2013). “Flexible service chaining. requirements and architectures.,” In EWSDN: European Workshop on Software Defined Networks.
62.
Zurück zum Zitat Ding, W., Qi, W., Wang, J., & Chen, B. (2015). Openscaas: an open service chain as a service platform toward the integration of SDN and NFV. IEEE Network, 29(3), 30–35.CrossRef Ding, W., Qi, W., Wang, J., & Chen, B. (2015). Openscaas: an open service chain as a service platform toward the integration of SDN and NFV. IEEE Network, 29(3), 30–35.CrossRef
63.
Zurück zum Zitat Li, Y., Zheng, F., Chen, M., & Jin, D. (2015). A unified control and optimization framework for dynamical service chaining in software-defined NFV system. IEEE Wireless Communications, 22(6), 15–23.CrossRef Li, Y., Zheng, F., Chen, M., & Jin, D. (2015). A unified control and optimization framework for dynamical service chaining in software-defined NFV system. IEEE Wireless Communications, 22(6), 15–23.CrossRef
64.
Zurück zum Zitat Soares, J., Gonçalves, C., Parreira, B., Tavares, P., Carapinha, J., Barraca, J. P., et al. (2015). Toward a telco cloud environment for service functions. IEEE Communications Magazine, 53(2), 98–106.CrossRef Soares, J., Gonçalves, C., Parreira, B., Tavares, P., Carapinha, J., Barraca, J. P., et al. (2015). Toward a telco cloud environment for service functions. IEEE Communications Magazine, 53(2), 98–106.CrossRef
65.
Zurück zum Zitat Checko, A., Christiansen, H. L., Yan, Y., Scolari, L., Kardaras, G., Berger, M. S., et al. (2015). Cloud ran for mobile networks a technology overview. IEEE Communications Surveys & Tutorials, 17(1), 405–426.CrossRef Checko, A., Christiansen, H. L., Yan, Y., Scolari, L., Kardaras, G., Berger, M. S., et al. (2015). Cloud ran for mobile networks a technology overview. IEEE Communications Surveys & Tutorials, 17(1), 405–426.CrossRef
66.
Zurück zum Zitat Rost, P., Bernardos, C., Domenico, A., Girolamo, M., Lalam, M., Maeder, A., et al. (2014). Cloud technologies for flexible 5g radio access networks. IEEE Communications Magazine, 52(5), 68–76.CrossRef Rost, P., Bernardos, C., Domenico, A., Girolamo, M., Lalam, M., Maeder, A., et al. (2014). Cloud technologies for flexible 5g radio access networks. IEEE Communications Magazine, 52(5), 68–76.CrossRef
67.
Zurück zum Zitat Zhou, S., Zhao, T., Niu, Z., & Zhou, S. (2016). Software-defined hyper-cellular architecture for green and elastic wireless access. IEEE Communications Magazine, 54(1), 12–19.CrossRef Zhou, S., Zhao, T., Niu, Z., & Zhou, S. (2016). Software-defined hyper-cellular architecture for green and elastic wireless access. IEEE Communications Magazine, 54(1), 12–19.CrossRef
68.
Zurück zum Zitat Sun, S., Gong, L., Rong, B., & Lu, K. (2015). An intelligent SDN framework for 5g heterogeneous networks. IEEE Communications Magazine, 53(11), 142–147.CrossRef Sun, S., Gong, L., Rong, B., & Lu, K. (2015). An intelligent SDN framework for 5g heterogeneous networks. IEEE Communications Magazine, 53(11), 142–147.CrossRef
69.
Zurück zum Zitat Zhou, Q., Wang, C.-X., McLaughlin, S., & Zhou, X. (2015). Network virtualization and resource description in software-defined wireless networks. IEEE Communications Magazine, 53(11), 110–117.CrossRef Zhou, Q., Wang, C.-X., McLaughlin, S., & Zhou, X. (2015). Network virtualization and resource description in software-defined wireless networks. IEEE Communications Magazine, 53(11), 110–117.CrossRef
70.
Zurück zum Zitat Patel, M., Naughton, B., Chan, C., Sprecher, N., Abeta, S., Neal, A.,et al. (2014). Mobile-edge computing introductory technical white paper. White Paper, Mobile-edge Computing (MEC) industry initiative. Patel, M., Naughton, B., Chan, C., Sprecher, N., Abeta, S., Neal, A.,et al. (2014). Mobile-edge computing introductory technical white paper. White Paper, Mobile-edge Computing (MEC) industry initiative.
72.
Zurück zum Zitat Cau, E., Corici, M., Bellavista, P., Foschini, L., Carella, G., Edmonds, A., et al. (2016). Efficient exploitation of mobile edge computing for virtualized 5g in epc architectures. In 2016 4th IEEE international conference on mobile cloud computing, services, and engineering (MobileCloud) (pp. 100–109). IEEE. Cau, E., Corici, M., Bellavista, P., Foschini, L., Carella, G., Edmonds, A., et al. (2016). Efficient exploitation of mobile edge computing for virtualized 5g in epc architectures. In 2016 4th IEEE international conference on mobile cloud computing, services, and engineering (MobileCloud) (pp. 100–109). IEEE.
73.
Zurück zum Zitat Chen, X., Jiao, L., Li, W., & Fu, X. (2015). Efficient multi-user computation offloading for mobile-edge cloud computing. Chen, X., Jiao, L., Li, W., & Fu, X. (2015). Efficient multi-user computation offloading for mobile-edge cloud computing.
74.
Zurück zum Zitat Hu, Y. C., Patel, M., Sabella, D., Sprecher, N., & Young, V. (2015). Mobile edge computing a key technology towards 5g. ETSI White Paper (Vol. 11). Hu, Y. C., Patel, M., Sabella, D., Sprecher, N., & Young, V. (2015). Mobile edge computing a key technology towards 5g. ETSI White Paper (Vol. 11).
75.
Zurück zum Zitat Karagiannis, G., Jamakovic, A., Edmonds, A., Parada, C., Metsch, T., Pichon, D., et al. (2014). Mobile cloud networking: Virtualisation of cellular networks. In 2014 21st international conference on telecommunications (ICT) (pp. 410–415). IEEE. Karagiannis, G., Jamakovic, A., Edmonds, A., Parada, C., Metsch, T., Pichon, D., et al. (2014). Mobile cloud networking: Virtualisation of cellular networks. In 2014 21st international conference on telecommunications (ICT) (pp. 410–415). IEEE.
76.
Zurück zum Zitat Li, H., Shou, G., Hu, Y., & Guo, Z. (2016). Mobile edge computing: Progress and challenges. In 2016 4th IEEE international conference on mobile cloud computing, services, and engineering (MobileCloud) (pp. 83–84). IEEE. Li, H., Shou, G., Hu, Y., & Guo, Z. (2016). Mobile edge computing: Progress and challenges. In 2016 4th IEEE international conference on mobile cloud computing, services, and engineering (MobileCloud) (pp. 83–84). IEEE.
77.
Zurück zum Zitat Nunna, S., Kousaridas, A., Ibrahim, M., Dillinger, M., Thuemmler, C., Feussner, H., & Schneider, A. (2015). e real-time context-aware collaboration through 5g and mobile edge computing. In 2015 12th international conference on information technology-new generations (ITNG) (pp. 601–605). IEEE. Nunna, S., Kousaridas, A., Ibrahim, M., Dillinger, M., Thuemmler, C., Feussner, H., & Schneider, A. (2015). e real-time context-aware collaboration through 5g and mobile edge computing. In 2015 12th international conference on information technology-new generations (ITNG) (pp. 601–605). IEEE.
78.
Zurück zum Zitat Samdanis, K., Costa-Perez, X., & Sciancalepore, V. (2016). From network sharing to multi-tenancy: The 5g network slice broker. arXiv preprint arXiv:1605.01201. Samdanis, K., Costa-Perez, X., & Sciancalepore, V. (2016). From network sharing to multi-tenancy: The 5g network slice broker. arXiv preprint arXiv:​1605.​01201.
79.
Zurück zum Zitat Fajardo, J. O., Taboada, I., & Liberal, F. (2015). Improving content delivery efficiency through multi-layer mobile edge adaptation. IEEE Network, 29(6), 40–46.CrossRef Fajardo, J. O., Taboada, I., & Liberal, F. (2015). Improving content delivery efficiency through multi-layer mobile edge adaptation. IEEE Network, 29(6), 40–46.CrossRef
Metadaten
Titel
Software Defined Wireless Networks: A Survey of Issues and Solutions
verfasst von
Anil Kumar Rangisetti
Bheemarjuna Reddy Tamma
Publikationsdatum
14.08.2017
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 4/2017
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-017-4825-8

Weitere Artikel der Ausgabe 4/2017

Wireless Personal Communications 4/2017 Zur Ausgabe

Neuer Inhalt