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Erschienen in: Wireless Personal Communications 3/2019

20.02.2019

Outage Performance Comparison of Dual-Hop Full Duplex Underlay Cognitive Relay Networks

verfasst von: S. Poornima, A. V. Babu

Erschienen in: Wireless Personal Communications | Ausgabe 3/2019

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Abstract

This paper investigates the outage probability performance of the secondary user (SU) in an underlay dual-hop, decode and forward (DF), full duplex cognitive relay network (FDCRN). First, we develop analytical closed form expression for outage probability and throughput for a dual-hop DF FDCRN by making use of the direct link signal as a useful signal to improve the signal-to-noise ratio at the secondary destination. Next, we compare the outage and throughput performance of various FDCRN and half duplex cognitive relay network (HDCRN) protocols, namely, (1) dual-hop DF FDCRN with direct link treated as interference, (2) dual-hop DF FDCRN with direct link signal cancelled by employing recursive backward interference cancellation technique, and (3) dual-hop DF HDCRN that employs maximal ratio combining at SD. Closed form expressions for the outage probabilities experienced in the secondary network are derived by taking into account the residual self-interference at the full duplex relay node, in independent non-identical Rayleigh fading channels. The analysis considers the maximum transmit power constraint of the individual secondary nodes and the tolerable interference threshold power constraint of the primary destination as well. The results demonstrate that the outage performance of the SU gets improved significantly when the direct link is exploited at the secondary destination. Further, we evaluate the impact of relay location and the power allocation ratio among secondary source and relay on the outage probability. The analytical results are validated by extensive Monte-Carlo simulations.

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Literatur
1.
Zurück zum Zitat Mitola, J., & Maguire, G. Q. (1999). Cognitive radio: Making software radios more personal. IEEE Personal Communications, 13(18), 4–6. Mitola, J., & Maguire, G. Q. (1999). Cognitive radio: Making software radios more personal. IEEE Personal Communications, 13(18), 4–6.
2.
Zurück zum Zitat Goldsmith, A., Jafar, S. A., Maric, I., & Srinivasa, S. (2009). Breaking spectrum gridlock with cognitive radios: An information theoretic perspective. Proceedings of the IEEE, 97(5), 894–914.CrossRef Goldsmith, A., Jafar, S. A., Maric, I., & Srinivasa, S. (2009). Breaking spectrum gridlock with cognitive radios: An information theoretic perspective. Proceedings of the IEEE, 97(5), 894–914.CrossRef
3.
Zurück zum Zitat Simon, H. (2005). Cognitive radio: Brain-empowered wireless communications. IEEE Journal on Selected Areas in Communications., 23(2), 201–220.CrossRef Simon, H. (2005). Cognitive radio: Brain-empowered wireless communications. IEEE Journal on Selected Areas in Communications., 23(2), 201–220.CrossRef
4.
Zurück zum Zitat Wang, B., & Liu, K. J. R. (2011). Advances in cognitive radio networks: A survey. IEEE Journal of Selected Topics in Signal Processing, 5(1), 5–23.CrossRef Wang, B., & Liu, K. J. R. (2011). Advances in cognitive radio networks: A survey. IEEE Journal of Selected Topics in Signal Processing, 5(1), 5–23.CrossRef
5.
Zurück zum Zitat Andrew, S., Elza, E., & Behnaam, A. (2003). User cooperation diversity. Part I. System description. IEEE Transactions on Communications., 51(11), 1927–1938.CrossRef Andrew, S., Elza, E., & Behnaam, A. (2003). User cooperation diversity. Part I. System description. IEEE Transactions on Communications., 51(11), 1927–1938.CrossRef
6.
Zurück zum Zitat Laneman, J. N., Tse, D. N. C., & Wornell, G. W. (2004). Cooperativediversity in wireless networks: Efficient protocols and outagebehavior. IEEE Transactions on Information theory, 50(12), 3062–3080.MathSciNetCrossRefMATH Laneman, J. N., Tse, D. N. C., & Wornell, G. W. (2004). Cooperativediversity in wireless networks: Efficient protocols and outagebehavior. IEEE Transactions on Information theory, 50(12), 3062–3080.MathSciNetCrossRefMATH
7.
Zurück zum Zitat Letaief, K. B., & Zhang, W. (2009). Cooperative communications for cognitive radio networks. Proceedings of the IEEE, 97(5), 878–893.CrossRef Letaief, K. B., & Zhang, W. (2009). Cooperative communications for cognitive radio networks. Proceedings of the IEEE, 97(5), 878–893.CrossRef
8.
Zurück zum Zitat Sabharwal, A., Schniter, P., Guo, D., Bliss, D. W., Rangarajan, S., & Wichman, R. (2014). In-band full-duplex wireless: Challenges and opportunities. IEEE Journal on Selected areas in Communications, 32(9), 1367–1652. Sabharwal, A., Schniter, P., Guo, D., Bliss, D. W., Rangarajan, S., & Wichman, R. (2014). In-band full-duplex wireless: Challenges and opportunities. IEEE Journal on Selected areas in Communications, 32(9), 1367–1652.
9.
Zurück zum Zitat Melissa, D., Chris, D., & Ashutosh, S. (2012). Experiment-driven characterization of full-duplex wireless systems. IEEE Transactions on Wireless Communications., 11(12), 4296–4307.CrossRef Melissa, D., Chris, D., & Ashutosh, S. (2012). Experiment-driven characterization of full-duplex wireless systems. IEEE Transactions on Wireless Communications., 11(12), 4296–4307.CrossRef
10.
Zurück zum Zitat Zhang, Z., Xiaomeng, C., Keping, L., Vasilakos, A. V., & Hanzo, L. (2015). Full duplex techniques for 5G networks: Self-interference cancellation, protocol design, and relay selection. IEEE Communications Magazine, 53(5), 128–137.CrossRef Zhang, Z., Xiaomeng, C., Keping, L., Vasilakos, A. V., & Hanzo, L. (2015). Full duplex techniques for 5G networks: Self-interference cancellation, protocol design, and relay selection. IEEE Communications Magazine, 53(5), 128–137.CrossRef
11.
Zurück zum Zitat Evan, Everett, Debashis, Dash, Chris, Dick, & Ashutosh, Sabharwal. (2011). Self-interference cancellation in multi-hop full-duplex networks via structured signaling. In 49th Annual Allerton conference on communication, control, and computing (Allerton) (pp. 1619–1626). IEEE Evan, Everett, Debashis, Dash, Chris, Dick, & Ashutosh, Sabharwal. (2011). Self-interference cancellation in multi-hop full-duplex networks via structured signaling. In 49th Annual Allerton conference on communication, control, and computing (Allerton) (pp. 1619–1626). IEEE
12.
Zurück zum Zitat Björn, D., Dirk-Jan, B., Cristina, L., et al. (2014). Analog/RF solutions enabling compact full-duplex radios. IEEE Journal on Selected Areas in Communications, 32(9), 1662–1673.CrossRef Björn, D., Dirk-Jan, B., Cristina, L., et al. (2014). Analog/RF solutions enabling compact full-duplex radios. IEEE Journal on Selected Areas in Communications, 32(9), 1662–1673.CrossRef
13.
Zurück zum Zitat Taneli, R., Stefan, W., & Risto, W. (2011). Mitigation of loopback self-interference in full-duplex MIMO relays. IEEE Transactions on Signal Processing, 59(12), 5983–5993.MathSciNetCrossRefMATH Taneli, R., Stefan, W., & Risto, W. (2011). Mitigation of loopback self-interference in full-duplex MIMO relays. IEEE Transactions on Signal Processing, 59(12), 5983–5993.MathSciNetCrossRefMATH
14.
Zurück zum Zitat Taehoon, K., Sungmook, L., Sooyong, C., & Daesik, H. (2010). Optimal duplex mode for DF relay in terms of the outage probability. IEEE Transactions on Vehicular Technology, 59(7), 3628–3634.CrossRef Taehoon, K., Sungmook, L., Sooyong, C., & Daesik, H. (2010). Optimal duplex mode for DF relay in terms of the outage probability. IEEE Transactions on Vehicular Technology, 59(7), 3628–3634.CrossRef
15.
Zurück zum Zitat Liu, G., Yu, F. R., Hong, J., Leung, V. C. M., & Li, X. (2015). In-band full-duplex relaying: A survey, research issues and challenges. IEEE Communications Surveys and Tutorials, 17(2), 500–524.CrossRef Liu, G., Yu, F. R., Hong, J., Leung, V. C. M., & Li, X. (2015). In-band full-duplex relaying: A survey, research issues and challenges. IEEE Communications Surveys and Tutorials, 17(2), 500–524.CrossRef
16.
Zurück zum Zitat Yun, L., Lingyang, S., Zhu, H., & Yonghui, L. (2015). Full duplex cognitive radio: A new design paradigm for enhancing spectrum usage. IEEE Communications Magazine, 53(5), 138–145.CrossRef Yun, L., Lingyang, S., Zhu, H., & Yonghui, L. (2015). Full duplex cognitive radio: A new design paradigm for enhancing spectrum usage. IEEE Communications Magazine, 53(5), 138–145.CrossRef
17.
Zurück zum Zitat Lin, W., Wang, Y., & Li, F. Y. (2015). A multi-phase decode-and-forward transmission protocol in cognitive relay networks: Outage analysis and relay power allocation. In 81st Vehicular technology conference (VTC Spring) (pp. 1–5). IEEE. Lin, W., Wang, Y., & Li, F. Y. (2015). A multi-phase decode-and-forward transmission protocol in cognitive relay networks: Outage analysis and relay power allocation. In 81st Vehicular technology conference (VTC Spring) (pp. 1–5). IEEE.
18.
Zurück zum Zitat Zhu, J., Huang, J. & Zhang, W. (2010). Optimal one-dimensional relay placement in cognitive radio networks. In International conference on wireless communications and signal processing (WCSP) (pp. 1–6). IEEE Zhu, J., Huang, J. & Zhang, W. (2010). Optimal one-dimensional relay placement in cognitive radio networks. In International conference on wireless communications and signal processing (WCSP) (pp. 1–6). IEEE
19.
Zurück zum Zitat Tran, T.-T., Bao, V. N. Q., Thanh, V. D., & Duong, T. Q. (2013). Performance analysis and optimal relay position of cognitive spectrum-sharing dual-hop decode-and-forward networks. In 2013 International conference on computing, management and telecommunications (ComManTel) (pp. 269–273). IEEE. Tran, T.-T., Bao, V. N. Q., Thanh, V. D., & Duong, T. Q. (2013). Performance analysis and optimal relay position of cognitive spectrum-sharing dual-hop decode-and-forward networks. In 2013 International conference on computing, management and telecommunications (ComManTel) (pp. 269–273). IEEE.
20.
Zurück zum Zitat Shu, Z., & Chen, W. (2010). Optimal power allocation in cognitive relay networks under different power constraints. In IEEE International conference on wireless communications, networking and information security (WCNIS) (pp. 647–652). IEEE. Shu, Z., & Chen, W. (2010). Optimal power allocation in cognitive relay networks under different power constraints. In IEEE International conference on wireless communications, networking and information security (WCNIS) (pp. 647–652). IEEE.
21.
Zurück zum Zitat Mafra, S. B., Alves, H., Costa, D. B., Souza, R. D., Fernandez, E. M. G., & Latva-aho, M. (2015). On the performance of cognitive full-duplex relaying under spectrum sharing constraints. EURASIP Journal on Wireless Communications and Networking, 2015(1), 169.CrossRef Mafra, S. B., Alves, H., Costa, D. B., Souza, R. D., Fernandez, E. M. G., & Latva-aho, M. (2015). On the performance of cognitive full-duplex relaying under spectrum sharing constraints. EURASIP Journal on Wireless Communications and Networking, 2015(1), 169.CrossRef
22.
Zurück zum Zitat Li, N., Li, Y., Wang, T., Peng, M., & Wang, W. (2015). Full-duplex based spectrum sharing in cognitive two-way relay networks. In 2015 IEEE 26th annual international symposium on personal, indoor, and mobile radio communications (PIMRC) (pp. 997–1001). IEEE. Li, N., Li, Y., Wang, T., Peng, M., & Wang, W. (2015). Full-duplex based spectrum sharing in cognitive two-way relay networks. In 2015 IEEE 26th annual international symposium on personal, indoor, and mobile radio communications (PIMRC) (pp. 997–1001). IEEE.
23.
Zurück zum Zitat Hongbin, C., Songgao, T., & Feng, Z. (2015). Outage performance of relay-assisted transmissions in cognitive full-duplex relay networks. EURASIP Journal on Wireless Communications and Networking, 2015(1), 1–11. Hongbin, C., Songgao, T., & Feng, Z. (2015). Outage performance of relay-assisted transmissions in cognitive full-duplex relay networks. EURASIP Journal on Wireless Communications and Networking, 2015(1), 1–11.
24.
Zurück zum Zitat Doan, X.-T., Nguyen, N.-P., Yin, C., Da Costa, D. B., & Duong, T. Q. (2017). Cognitive full-duplex relay networks under the peakinterference power constraint of multiple primary users. EURASIP Journal on Wireless Communications and Networking, 2017, 1–10.CrossRef Doan, X.-T., Nguyen, N.-P., Yin, C., Da Costa, D. B., & Duong, T. Q. (2017). Cognitive full-duplex relay networks under the peakinterference power constraint of multiple primary users. EURASIP Journal on Wireless Communications and Networking, 2017, 1–10.CrossRef
25.
Zurück zum Zitat Tan, L. T., Ying, L., & Bliss, D. W. (2017). Power control and relay selection in full-duplex cognitive relay networks: Coherent versus non-coherent scenarios. In 2017 51st Annual conference on information sciences and systems (CISS) (pp. 1–6). IEEE. Tan, L. T., Ying, L., & Bliss, D. W. (2017). Power control and relay selection in full-duplex cognitive relay networks: Coherent versus non-coherent scenarios. In 2017 51st Annual conference on information sciences and systems (CISS) (pp. 1–6). IEEE.
26.
Zurück zum Zitat Hyungjong, K., Sungmook, L., Hano, W., & Daesik, H. (2012). Optimal power allocation and outage analysis for cognitive full duplex relay systems. IEEE Transactions on Wireless Communications, 11(10), 3754–3765.CrossRef Hyungjong, K., Sungmook, L., Hano, W., & Daesik, H. (2012). Optimal power allocation and outage analysis for cognitive full duplex relay systems. IEEE Transactions on Wireless Communications, 11(10), 3754–3765.CrossRef
27.
Zurück zum Zitat Yin, C., Doan, T. X., Nguyen, N.-P., Mai, T., & Nguyen, L. D. (2017). Outage probability of full-duplex cognitive relay networks with partial relay selection. In International conference on recent advances in signal processing, telecommunications & computing (SigTelCom) (pp. 115–118). IEEE. Yin, C., Doan, T. X., Nguyen, N.-P., Mai, T., & Nguyen, L. D. (2017). Outage probability of full-duplex cognitive relay networks with partial relay selection. In International conference on recent advances in signal processing, telecommunications & computing (SigTelCom) (pp. 115–118). IEEE.
28.
Zurück zum Zitat Rajkumar, S., & Jayaraman S, T. (2016). Outage analysis of OFDM based cognitive radio network with full duplex relay selection. IET Signal Processing, 10(8), 865–872.CrossRef Rajkumar, S., & Jayaraman S, T. (2016). Outage analysis of OFDM based cognitive radio network with full duplex relay selection. IET Signal Processing, 10(8), 865–872.CrossRef
29.
Zurück zum Zitat Olivo, E. E. B., Osorio, D. P. M., Alves, H., Santos, F. J. C. S., & Latva-aho, M. (2016). An adaptive transmission scheme for cognitive decode-and-forward relaying networks: Half duplex, full duplex, or no cooperation. IEEE Transactions on Wireless Communications, 15(8), 5586–5602.CrossRef Olivo, E. E. B., Osorio, D. P. M., Alves, H., Santos, F. J. C. S., & Latva-aho, M. (2016). An adaptive transmission scheme for cognitive decode-and-forward relaying networks: Half duplex, full duplex, or no cooperation. IEEE Transactions on Wireless Communications, 15(8), 5586–5602.CrossRef
30.
Zurück zum Zitat Chu, T. M. C., & Zepernick, H.-J. (2017). On capacity of full-duplex cognitive cooperative radio networks with optimal power allocation. In 2017 IEEE wireless communications and networking conference (WCNC) (pp. 1–6). IEEE. Chu, T. M. C., & Zepernick, H.-J. (2017). On capacity of full-duplex cognitive cooperative radio networks with optimal power allocation. In 2017 IEEE wireless communications and networking conference (WCNC) (pp. 1–6). IEEE.
31.
Zurück zum Zitat Alves, H., Costa, D. B., Souza, R. D., & Latva-aho, M. (2013). Performance of block-Markov full duplex relaying with self interference in Nakagami-m fading. IEEE Wireless Communications Letters, 2(3), 311–314.CrossRef Alves, H., Costa, D. B., Souza, R. D., & Latva-aho, M. (2013). Performance of block-Markov full duplex relaying with self interference in Nakagami-m fading. IEEE Wireless Communications Letters, 2(3), 311–314.CrossRef
32.
Zurück zum Zitat Osorio, D. P. M., Olivo, E. E. B., Alves, H., Santos, F. J. C. S., & Latva-aho, M. (2015). Exploiting the direct link in full-duplex amplify-and-forward relaying networks. IEEE Signal Processing Letters, 22(10), 1766–1770.CrossRef Osorio, D. P. M., Olivo, E. E. B., Alves, H., Santos, F. J. C. S., & Latva-aho, M. (2015). Exploiting the direct link in full-duplex amplify-and-forward relaying networks. IEEE Signal Processing Letters, 22(10), 1766–1770.CrossRef
33.
Zurück zum Zitat Mohammad, K., Amr, I., Mohamed-Slim, A., & Sonia, A. (2013). On the outage performance of full-duplex selective decode-and-forward relaying. IEEE Communications Letters, 17(6), 1180–1183.CrossRef Mohammad, K., Amr, I., Mohamed-Slim, A., & Sonia, A. (2013). On the outage performance of full-duplex selective decode-and-forward relaying. IEEE Communications Letters, 17(6), 1180–1183.CrossRef
34.
Zurück zum Zitat Alves, H., Fraidenraich, G., Souza, R. D., Bennis, M., & Latva-aho, M. (2012). Performance analysis of full duplex and selective and incremental half duplex relaying schemes. IEEE Wireless Communications and Networking Conference (WCNC), 1, 771–775.CrossRef Alves, H., Fraidenraich, G., Souza, R. D., Bennis, M., & Latva-aho, M. (2012). Performance analysis of full duplex and selective and incremental half duplex relaying schemes. IEEE Wireless Communications and Networking Conference (WCNC), 1, 771–775.CrossRef
35.
Zurück zum Zitat Khafagy, M. G., Ismail, A., Alouini, M.-S., & Aïssa, S. (2015). Efficient cooperative protocols for full-duplex relaying over Nakagami-\(m\) fading channels. IEEE Transactions on Wireless Communications, 14(6), 3456–3470.CrossRef Khafagy, M. G., Ismail, A., Alouini, M.-S., & Aïssa, S. (2015). Efficient cooperative protocols for full-duplex relaying over Nakagami-\(m\) fading channels. IEEE Transactions on Wireless Communications, 14(6), 3456–3470.CrossRef
36.
Zurück zum Zitat Chen, Z., & Quek, T. Q. S. (2016). Coherent signaling for full-duplex relay channel with self-interference. IEEE Communications Letters, 20(9), 1792–1795.CrossRef Chen, Z., & Quek, T. Q. S. (2016). Coherent signaling for full-duplex relay channel with self-interference. IEEE Communications Letters, 20(9), 1792–1795.CrossRef
37.
Zurück zum Zitat Chen, Z., Quek, T. Q. S., & Liang, Y.-C. (2017). Spectral efficiency and relay energy efficiency of full-duplex relay channel. IEEE Transactions on Wireless Communications, 16(5), 3162–3175.CrossRef Chen, Z., Quek, T. Q. S., & Liang, Y.-C. (2017). Spectral efficiency and relay energy efficiency of full-duplex relay channel. IEEE Transactions on Wireless Communications, 16(5), 3162–3175.CrossRef
38.
Zurück zum Zitat Sikora, M., Laneman, J. N., Haenggi, M., Costello, D. J., & Fuja, T. E. (2006). Bandwidth and power-efficient routing in linear wireless networks. IEEE Transactions on Information Theory, 52(6), 2624–2633.MathSciNetCrossRefMATH Sikora, M., Laneman, J. N., Haenggi, M., Costello, D. J., & Fuja, T. E. (2006). Bandwidth and power-efficient routing in linear wireless networks. IEEE Transactions on Information Theory, 52(6), 2624–2633.MathSciNetCrossRefMATH
39.
Zurück zum Zitat Boyer, J., Falconer, D. D., & Yanikomeroglu, H. (2004). Multihop diversity in wireless relaying channels. IEEE Transactions on Communications, 52(10), 1820–1830.CrossRef Boyer, J., Falconer, D. D., & Yanikomeroglu, H. (2004). Multihop diversity in wireless relaying channels. IEEE Transactions on Communications, 52(10), 1820–1830.CrossRef
40.
Zurück zum Zitat Alan, Jeffrey, & Daniel, Zwillinger. (2007). Table of integrals, series, and products. Cambridge: Academic Press. Alan, Jeffrey, & Daniel, Zwillinger. (2007). Table of integrals, series, and products. Cambridge: Academic Press.
Metadaten
Titel
Outage Performance Comparison of Dual-Hop Full Duplex Underlay Cognitive Relay Networks
verfasst von
S. Poornima
A. V. Babu
Publikationsdatum
20.02.2019
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 3/2019
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-019-06207-2

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