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Erschienen in: Mobile Networks and Applications 6/2018

20.12.2017

Outage Performance for IDF Relaying Mobile Cooperative Networks

verfasst von: Lingwei Xu, Jingjing Wang, Yun Liu, Wei Shi, T. Aaron Gulliver

Erschienen in: Mobile Networks and Applications | Ausgabe 6/2018

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Abstract

Cooperative communication is a key technique in fifth generation (5G) mobile wireless networks. In this paper, we study the transmit antenna selection (TAS) in mobile cooperative networks. We derive the exact closed-form outage probability (OP) expressions for two TAS schemes. Based on the derived OP expressions, the impact of power allocation on OP performance is evaluated. Then we obtain that the Monte-Carlo simulation results and the analysis results match very well. The OP performance is affected by the power-allocation parameter.

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Literatur
1.
Zurück zum Zitat Mumtaz S, Huq KMS, Rodriguez J (2014) Direct mobile-to-mobile communication: paradigm for 5G. IEEE Wirel Commun 21(5):14–23CrossRef Mumtaz S, Huq KMS, Rodriguez J (2014) Direct mobile-to-mobile communication: paradigm for 5G. IEEE Wirel Commun 21(5):14–23CrossRef
2.
Zurück zum Zitat Chen S, Zhao J (2014) The requirements, challenges and technologies for 5G of terrestrial mobile telecommunication. IEEE Commun Mag 52(5):36–43CrossRef Chen S, Zhao J (2014) The requirements, challenges and technologies for 5G of terrestrial mobile telecommunication. IEEE Commun Mag 52(5):36–43CrossRef
3.
Zurück zum Zitat Boccardi F, Heath RW, Lozano A, Marzetta TL, Popovski P (2014) Five disruptive technology directions for 5G. IEEE Commun Mag 52(2):74–80CrossRef Boccardi F, Heath RW, Lozano A, Marzetta TL, Popovski P (2014) Five disruptive technology directions for 5G. IEEE Commun Mag 52(2):74–80CrossRef
4.
Zurück zum Zitat Zhang HJ, Jiang CX, Guo WS, Wang SY (2014) Coexistence of Wi-Fi and heterogeneous small cell networks sharing unlicensed spectrum. IEEE Commun Mag 53(3):158–164CrossRef Zhang HJ, Jiang CX, Guo WS, Wang SY (2014) Coexistence of Wi-Fi and heterogeneous small cell networks sharing unlicensed spectrum. IEEE Commun Mag 53(3):158–164CrossRef
5.
Zurück zum Zitat Zhang HJ, Jiang CX, Beaulieu NC, Chu XL, Wang XB, Quek TQS (2015) Resource allocation for cognitive small cell networks: a cooperative bargaining game theoretic approach. IEEE Trans Wirel Commun 14(6):3481–3493CrossRef Zhang HJ, Jiang CX, Beaulieu NC, Chu XL, Wang XB, Quek TQS (2015) Resource allocation for cognitive small cell networks: a cooperative bargaining game theoretic approach. IEEE Trans Wirel Commun 14(6):3481–3493CrossRef
6.
Zurück zum Zitat Zhang HJ, Jiang CX, Mao X (2016) Hsiao-Hwa Chen, “Interference-limit resource optimization in cognitive femtocells with fairness and imperfect spectrum sensing”. IEEE Trans Veh Technol 65(3):1761–1771CrossRef Zhang HJ, Jiang CX, Mao X (2016) Hsiao-Hwa Chen, “Interference-limit resource optimization in cognitive femtocells with fairness and imperfect spectrum sensing”. IEEE Trans Veh Technol 65(3):1761–1771CrossRef
7.
Zurück zum Zitat Zhang HJ, Huang S, Jiang CX, Long K, Leung VCM, Poor HV (2017) Energy efficient user association and power allocation in millimeter wave based ultra dense networks with energy harvesting base stations. IEEE Journal on Selected Areas in Communications 35(9):1936–1947CrossRef Zhang HJ, Huang S, Jiang CX, Long K, Leung VCM, Poor HV (2017) Energy efficient user association and power allocation in millimeter wave based ultra dense networks with energy harvesting base stations. IEEE Journal on Selected Areas in Communications 35(9):1936–1947CrossRef
8.
Zurück zum Zitat Zhang HJ, Liu N, Chu XL, Long K, Aghvami AH, Leung VCM (2017) Network slicing based 5G and future mobile networks: mobility, resource management, and challenges. IEEE Communications Magazine 55(8):138–145CrossRef Zhang HJ, Liu N, Chu XL, Long K, Aghvami AH, Leung VCM (2017) Network slicing based 5G and future mobile networks: mobility, resource management, and challenges. IEEE Communications Magazine 55(8):138–145CrossRef
9.
Zurück zum Zitat Ge XH, Tu S, Mao GQ, Wang CX, Han T (2015) 5G ultra-dense cellular networks. IEEE Wirel Commun 23(1):72–79CrossRef Ge XH, Tu S, Mao GQ, Wang CX, Han T (2015) 5G ultra-dense cellular networks. IEEE Wirel Commun 23(1):72–79CrossRef
10.
Zurück zum Zitat Ilhan H (2015) Performance analysis of cooperative vehicular systems with co-channel interference over cascaded Nakagami-m fading channels. Wirel Pers Commun 83(1):203–214MathSciNetCrossRef Ilhan H (2015) Performance analysis of cooperative vehicular systems with co-channel interference over cascaded Nakagami-m fading channels. Wirel Pers Commun 83(1):203–214MathSciNetCrossRef
11.
Zurück zum Zitat Nguyen SQ, Kong HY (2016) Outage probability analysis in dual-hop vehicular networks with the assistance of multiple access points and vehicle nodes. Wirel Pers Commun 87(4):1175–1190CrossRef Nguyen SQ, Kong HY (2016) Outage probability analysis in dual-hop vehicular networks with the assistance of multiple access points and vehicle nodes. Wirel Pers Commun 87(4):1175–1190CrossRef
12.
Zurück zum Zitat Wang SG, Ruby R, Leung VCM, Yao ZQ (2016) A low-complexity power allocation strategy to minimize sum-source-power for multiuser single-AF-relay networks. IEEE Trans Commun 64(8):3275–3283CrossRef Wang SG, Ruby R, Leung VCM, Yao ZQ (2016) A low-complexity power allocation strategy to minimize sum-source-power for multiuser single-AF-relay networks. IEEE Trans Commun 64(8):3275–3283CrossRef
13.
Zurück zum Zitat Xu LW, Zhang H (2016) Performance analysis of threshold digital relaying M2M cooperative networks. Wirel Netw 22(5):1595–1603CrossRef Xu LW, Zhang H (2016) Performance analysis of threshold digital relaying M2M cooperative networks. Wirel Netw 22(5):1595–1603CrossRef
14.
Zurück zum Zitat Xu LW, Gulliver TA (2017) Performance analysis for M2M video transmission cooperative networks using transmit antenna selection. Multimedia Tools and Applications 76(22):23891–23902CrossRef Xu LW, Gulliver TA (2017) Performance analysis for M2M video transmission cooperative networks using transmit antenna selection. Multimedia Tools and Applications 76(22):23891–23902CrossRef
15.
Zurück zum Zitat Xu LW, Wang JJ, Zhang H, Gulliver TA (2017) Performance analysis of IAF relaying mobile D2D cooperative networks. J Frankl Inst 354(2):902–916CrossRef Xu LW, Wang JJ, Zhang H, Gulliver TA (2017) Performance analysis of IAF relaying mobile D2D cooperative networks. J Frankl Inst 354(2):902–916CrossRef
16.
Zurück zum Zitat Xu LW, Wang JJ, Liu Y, Yang J, Shi W, Gulliver TA (2017) Outage performance for IDF relaying mobile cooperative networks. In: International Conference on 5G for Future Wireless Networks, Beijing Xu LW, Wang JJ, Liu Y, Yang J, Shi W, Gulliver TA (2017) Outage performance for IDF relaying mobile cooperative networks. In: International Conference on 5G for Future Wireless Networks, Beijing
17.
Zurück zum Zitat Xu LW, Zhang H, Wang JJ, Gulliver TA (2017) Joint TAS/SC and power allocation for IAF relaying D2D cooperative networks. Wirel Netw 23(7):2135–2143CrossRef Xu LW, Zhang H, Wang JJ, Gulliver TA (2017) Joint TAS/SC and power allocation for IAF relaying D2D cooperative networks. Wirel Netw 23(7):2135–2143CrossRef
18.
Zurück zum Zitat Xu LW, Zhang H, Gulliver TA (2016) Joint transmit antenna selection and power allocation for ISDF relaying mobile-to-mobile sensor networks. Sensors 16(2):249–262CrossRef Xu LW, Zhang H, Gulliver TA (2016) Joint transmit antenna selection and power allocation for ISDF relaying mobile-to-mobile sensor networks. Sensors 16(2):249–262CrossRef
19.
Zurück zum Zitat Yeoh PL, Elkashlan M, Yang N, Costa DBD, Duong TQ (2013) Unified analysis of transmit antenna selection in MIMO multi-relay networks. IEEE Trans Veh Technol 62(2):933–939CrossRef Yeoh PL, Elkashlan M, Yang N, Costa DBD, Duong TQ (2013) Unified analysis of transmit antenna selection in MIMO multi-relay networks. IEEE Trans Veh Technol 62(2):933–939CrossRef
20.
Zurück zum Zitat Zhu J, Zou YL, Wang GP, Yao YD, Karagiannidis GK (2016) On secrecy performance of antenna-selection-aided MIMO systems against eavesdropping. IEEE Trans Veh Technol 65(1):214–225CrossRef Zhu J, Zou YL, Wang GP, Yao YD, Karagiannidis GK (2016) On secrecy performance of antenna-selection-aided MIMO systems against eavesdropping. IEEE Trans Veh Technol 65(1):214–225CrossRef
21.
Zurück zum Zitat Lei HJ, Gao C, Ansari IS, Guo YC, Zou YL, Pan GF, Qaraqe KA (2017) Secrecy outage performance of transmit antenna selection for MIMO underlay cognitive radio systems over Nakagami-m channels. IEEE Trans Veh Technol 66(3):2237–2250CrossRef Lei HJ, Gao C, Ansari IS, Guo YC, Zou YL, Pan GF, Qaraqe KA (2017) Secrecy outage performance of transmit antenna selection for MIMO underlay cognitive radio systems over Nakagami-m channels. IEEE Trans Veh Technol 66(3):2237–2250CrossRef
22.
Zurück zum Zitat Ochiai H, Mitran P, Tarokh V (2006) Variable-rate two-phase collaborative communication protocols for wireless networks. IEEE Trans Inf Theory 52(9):4299–4313MathSciNetCrossRef Ochiai H, Mitran P, Tarokh V (2006) Variable-rate two-phase collaborative communication protocols for wireless networks. IEEE Trans Inf Theory 52(9):4299–4313MathSciNetCrossRef
23.
Zurück zum Zitat Karagiannidis GK, Sagias NC, Mathiopoulos PT (2007) N*Nakagami: a novel stochastic model for cascaded fading channels. IEEE Trans Commun 55(8):1453–1458CrossRef Karagiannidis GK, Sagias NC, Mathiopoulos PT (2007) N*Nakagami: a novel stochastic model for cascaded fading channels. IEEE Trans Commun 55(8):1453–1458CrossRef
Metadaten
Titel
Outage Performance for IDF Relaying Mobile Cooperative Networks
verfasst von
Lingwei Xu
Jingjing Wang
Yun Liu
Wei Shi
T. Aaron Gulliver
Publikationsdatum
20.12.2017
Verlag
Springer US
Erschienen in
Mobile Networks and Applications / Ausgabe 6/2018
Print ISSN: 1383-469X
Elektronische ISSN: 1572-8153
DOI
https://doi.org/10.1007/s11036-017-0982-y

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