Skip to main content
Erschienen in: Telecommunication Systems 3/2019

03.07.2018

Coded cooperative spatial modulation based on multi-level construction of polar code

verfasst von: Shoaib Mughal, Fengfan Yang, HongJun Xu, Rahim Umar

Erschienen in: Telecommunication Systems | Ausgabe 3/2019

Einloggen

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

search-config
loading …

Abstract

A spatial modulation scheme based on the multi-level construction of polar code is proposed and its performance over Rayleigh and Rician fading channels is evaluated. The spatial modulation exhibits antenna index transmission that inculcates an increased spectral efficiency in the proposed setup. Moreover, in the considered multi-level construction of polar code there exists a parallel built-in structure that enabled us to effectively extend the proposed polar coded spatial modulation scheme to cooperative scenarios. In order to check the usefulness of the proposed coded cooperative spatial modulation scheme, we have also developed a conventional polar coded cooperative nested scheme in the context of spatial modulation. Monte Carlo simulated results reveal that the proposed coded cooperative spatial modulation scheme outperforms the nested coded cooperative spatial modulation scheme under an identical conditions. The increased bit-error-rate performance of the proposed coded cooperative spatial modulation scheme is made possible due to effective deployment of the joint successive cancellation polar decoder at the destination node. Moreover, the proposed coded cooperative spatial modulation schemes outperform its coded non-cooperative counterpart schemes under identical conditions, as expected.

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

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 "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"

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 Barry, J. R., Lee, E. A., & Messerschmitt, D. G. (2004). Digital communication. New York: Springer.CrossRef Barry, J. R., Lee, E. A., & Messerschmitt, D. G. (2004). Digital communication. New York: Springer.CrossRef
2.
Zurück zum Zitat Foschini, G. J., & Gans, M. J. (1998). On limits of wireless communications in a fading environment when using multiple antennas. Wireless Personal Communications, 6(3), 311–335.CrossRef Foschini, G. J., & Gans, M. J. (1998). On limits of wireless communications in a fading environment when using multiple antennas. Wireless Personal Communications, 6(3), 311–335.CrossRef
3.
Zurück zum Zitat Wolniansky, P. W., Foschini, G. J., Golden, G. D., & Valenzuela, R. A. (1998). V-BLAST: An architecture for realizing very high data rates over the rich-scattering wireless channel. In ISSSE 98. 1998 URSI international symposium on signals, systems, and electronics, pp. 295–300. Wolniansky, P. W., Foschini, G. J., Golden, G. D., & Valenzuela, R. A. (1998). V-BLAST: An architecture for realizing very high data rates over the rich-scattering wireless channel. In ISSSE 98. 1998 URSI international symposium on signals, systems, and electronics, pp. 295–300.
4.
Zurück zum Zitat Li, Q., Li, G., Lee, W., Lee, M. I., Mazzarese, D., Clerckx, B., et al. (2010). MIMO techniques in WiMAX and LTE: A feature overview. IEEE Communications Magazine, 48(5), 86–92.CrossRef Li, Q., Li, G., Lee, W., Lee, M. I., Mazzarese, D., Clerckx, B., et al. (2010). MIMO techniques in WiMAX and LTE: A feature overview. IEEE Communications Magazine, 48(5), 86–92.CrossRef
5.
Zurück zum Zitat Boccardi, F., Clerckx, B., Ghosh, A., Hardouin, E., Jngren, G., Kusume, K., et al. (2012). Multiple-antenna techniques in LTE-advanced. IEEE Communications Magazine, 50(3), 114–121.CrossRef Boccardi, F., Clerckx, B., Ghosh, A., Hardouin, E., Jngren, G., Kusume, K., et al. (2012). Multiple-antenna techniques in LTE-advanced. IEEE Communications Magazine, 50(3), 114–121.CrossRef
6.
Zurück zum Zitat Mesleh, R. Y., Haas, H., Sinanovic, S., Ahn, C. W., & Yun, S. (2008). Spatial modulation. IEEE Transactions on Vehicular Technology, 57(4), 2228–2241.CrossRef Mesleh, R. Y., Haas, H., Sinanovic, S., Ahn, C. W., & Yun, S. (2008). Spatial modulation. IEEE Transactions on Vehicular Technology, 57(4), 2228–2241.CrossRef
7.
Zurück zum Zitat Yang, Y., & Jiao, B. (2008). Information-guided channel-hopping for high data rate wireless communication. IEEE Communications Letters, 12(4), 225–227.CrossRef Yang, Y., & Jiao, B. (2008). Information-guided channel-hopping for high data rate wireless communication. IEEE Communications Letters, 12(4), 225–227.CrossRef
8.
Zurück zum Zitat Jeganathan, J., Ghrayeb, A., & Szczecinski, L. (2008). Spatial modulation: Optimal detection and performance analysis. IEEE Communications Letters, 12(8), 545–547.CrossRef Jeganathan, J., Ghrayeb, A., & Szczecinski, L. (2008). Spatial modulation: Optimal detection and performance analysis. IEEE Communications Letters, 12(8), 545–547.CrossRef
9.
Zurück zum Zitat Hwang, S. U., Jeon, S., Lee, S., & Seo, J. (2009). Soft-output ML detector for spatial modulation OFDM systems. IEICE Electronics Express, 6(19), 1426–1431.CrossRef Hwang, S. U., Jeon, S., Lee, S., & Seo, J. (2009). Soft-output ML detector for spatial modulation OFDM systems. IEICE Electronics Express, 6(19), 1426–1431.CrossRef
10.
Zurück zum Zitat Naidoo, N. R., Xu, H. J., & Quazi, T. A. M. (2011). Spatial modulation: Optimal detector asymptotic performance and multiple-stage detection. IET Communications, 5(10), 1368–1376.CrossRef Naidoo, N. R., Xu, H. J., & Quazi, T. A. M. (2011). Spatial modulation: Optimal detector asymptotic performance and multiple-stage detection. IET Communications, 5(10), 1368–1376.CrossRef
11.
Zurück zum Zitat Basar, E., Aygolu, U., Panayirci, E., & Poor, H. V. (2011). New trellis code design for spatial modulation. IEEE Transactions on Wireless Communications, 10(8), 2670–2680.CrossRef Basar, E., Aygolu, U., Panayirci, E., & Poor, H. V. (2011). New trellis code design for spatial modulation. IEEE Transactions on Wireless Communications, 10(8), 2670–2680.CrossRef
12.
Zurück zum Zitat Mesleh, R., Di Renzo, M., Haas, H., & Grant, P. M. (2010). Trellis coded spatial modulation. IEEE Transactions on Wireless Communications, 9(7), 2349–2361.CrossRef Mesleh, R., Di Renzo, M., Haas, H., & Grant, P. M. (2010). Trellis coded spatial modulation. IEEE Transactions on Wireless Communications, 9(7), 2349–2361.CrossRef
13.
Zurück zum Zitat Koca, M., & Sari, H. (2012). Bit-interleaved coded spatial modulation. In IEEE 23rd international symposium on personal indoor and mobile radio communications, 2012. PIMRC 2012, Sydney, Australia, pp. 1949–1954. Koca, M., & Sari, H. (2012). Bit-interleaved coded spatial modulation. In IEEE 23rd international symposium on personal indoor and mobile radio communications, 2012. PIMRC 2012, Sydney, Australia, pp. 1949–1954.
14.
Zurück zum Zitat Hunter, T. E., & Nosratinia, A. (2006). Diversity through coded cooperation. IEEE Transactions on Wireless Communications, 5(2), 283–289.CrossRef Hunter, T. E., & Nosratinia, A. (2006). Diversity through coded cooperation. IEEE Transactions on Wireless Communications, 5(2), 283–289.CrossRef
15.
Zurück zum Zitat Laneman, J. N., Wornell, G. W., & Tse, D. N. (2001). An efficient protocol for realizing cooperative diversity in wireless networks. In 2001 IEEE international symposium on information theory, 2001. Proceedings, p. 294. Laneman, J. N., Wornell, G. W., & Tse, D. N. (2001). An efficient protocol for realizing cooperative diversity in wireless networks. In 2001 IEEE international symposium on information theory, 2001. Proceedings, p. 294.
16.
Zurück zum Zitat Avestimehr, A. S., Diggavi, S. N., & David, N. C. (2011). Wireless network information flow: A deterministic approach. IEEE Transactions on Information Theory, 57(4), 1872–1905.CrossRef Avestimehr, A. S., Diggavi, S. N., & David, N. C. (2011). Wireless network information flow: A deterministic approach. IEEE Transactions on Information Theory, 57(4), 1872–1905.CrossRef
17.
Zurück zum Zitat Ejaz, S., & FengFan, Y. (2017). Jointly optimized ReedMuller codes for multilevel multirelay coded-cooperative VANETS. IEEE Transactions on Vehicular Technology, 66(5), 4017–4028. Ejaz, S., & FengFan, Y. (2017). Jointly optimized ReedMuller codes for multilevel multirelay coded-cooperative VANETS. IEEE Transactions on Vehicular Technology, 66(5), 4017–4028.
18.
Zurück zum Zitat Soliman, T., & Yang, F. (2016). Cooperative punctured polar coding (CPPC) scheme based on plotkins construction. Radioengineering, 25(3), 482–489.CrossRef Soliman, T., & Yang, F. (2016). Cooperative punctured polar coding (CPPC) scheme based on plotkins construction. Radioengineering, 25(3), 482–489.CrossRef
19.
Zurück zum Zitat Soliman, T., Yang, F., Ejaz, S., & Almslmany, A. (2017). Decode-and-forward polar coding scheme for receive diversity: A relay partially perfect retransmission for half-duplex wireless relay channels. IET Communications, 11(2), 185–191.CrossRef Soliman, T., Yang, F., Ejaz, S., & Almslmany, A. (2017). Decode-and-forward polar coding scheme for receive diversity: A relay partially perfect retransmission for half-duplex wireless relay channels. IET Communications, 11(2), 185–191.CrossRef
20.
Zurück zum Zitat Lin, R., Martin, P. A., & Taylor, D. P. (2012). Approximate Gaussian density evolution based analysis of distributed and adaptive turbo codes. IEEE Transactions on Communications, 60(8), 2156–2166.CrossRef Lin, R., Martin, P. A., & Taylor, D. P. (2012). Approximate Gaussian density evolution based analysis of distributed and adaptive turbo codes. IEEE Transactions on Communications, 60(8), 2156–2166.CrossRef
21.
Zurück zum Zitat Zhang, B., Chen, H., El-Hajjar, M., Maunder, R., & Hanzo, L. (2013). Distributed multiple-component turbo codes for cooperative hybrid ARQ. IEEE Signal Processing Letters, 20(6), 599–602.CrossRef Zhang, B., Chen, H., El-Hajjar, M., Maunder, R., & Hanzo, L. (2013). Distributed multiple-component turbo codes for cooperative hybrid ARQ. IEEE Signal Processing Letters, 20(6), 599–602.CrossRef
22.
Zurück zum Zitat Umar, R., Yang, F., & Mughal, S. (2017). Turbo coded OFDM combined with MIMO antennas based on matched interleaver for coded-cooperative wireless communication. Information, 8(2), 63.CrossRef Umar, R., Yang, F., & Mughal, S. (2017). Turbo coded OFDM combined with MIMO antennas based on matched interleaver for coded-cooperative wireless communication. Information, 8(2), 63.CrossRef
23.
Zurück zum Zitat Li, C., Yue, G., Wang, X., & Khojastepour, M. A. (2008). LDPC code design for half-duplex cooperative relay. IEEE Transactions on Wireless Communications, 7(11), 4558–4567.CrossRef Li, C., Yue, G., Wang, X., & Khojastepour, M. A. (2008). LDPC code design for half-duplex cooperative relay. IEEE Transactions on Wireless Communications, 7(11), 4558–4567.CrossRef
24.
Zurück zum Zitat Arikan, E. (2009). Channel polarization: A method for constructing capacity-achieving codes for symmetric binary-input memoryless channels. IEEE Transactions on Information Theory, 55(7), 3051–3073.CrossRef Arikan, E. (2009). Channel polarization: A method for constructing capacity-achieving codes for symmetric binary-input memoryless channels. IEEE Transactions on Information Theory, 55(7), 3051–3073.CrossRef
25.
Zurück zum Zitat Andersson, M., Rathi, V., Thobaben, R., Kliewer, J., & Skoglund, M. (2010). Nested polar codes for wiretap and relay channels. IEEE Communications Letters, 14(8), 752–754.CrossRef Andersson, M., Rathi, V., Thobaben, R., Kliewer, J., & Skoglund, M. (2010). Nested polar codes for wiretap and relay channels. IEEE Communications Letters, 14(8), 752–754.CrossRef
26.
Zurück zum Zitat Zhan, Q., Du, M., Wang, Y., & Zhou, F. (2014). Half-duplex relay systems based on polar codes. IET Communications, 8(4), 433–440.CrossRef Zhan, Q., Du, M., Wang, Y., & Zhou, F. (2014). Half-duplex relay systems based on polar codes. IET Communications, 8(4), 433–440.CrossRef
27.
Zurück zum Zitat Ejaz, S., FengFan, Y., & Soliman, T. H. (2015). Multi-level construction of polar codes for half-duplex wireless coded-cooperative networks. Frequenz, 69(11–12), 509–517. Ejaz, S., FengFan, Y., & Soliman, T. H. (2015). Multi-level construction of polar codes for half-duplex wireless coded-cooperative networks. Frequenz, 69(11–12), 509–517.
28.
Zurück zum Zitat Plotkin, M. (1960). Binary codes with specified minimum distance. IRE Transactions on Information Theory, 6(4), 445–450.CrossRef Plotkin, M. (1960). Binary codes with specified minimum distance. IRE Transactions on Information Theory, 6(4), 445–450.CrossRef
29.
Zurück zum Zitat Akuon, P., & Xu, H. (2014). Polar coded spatial modulation. IET Communications, 8(9), 1459–1466.CrossRef Akuon, P., & Xu, H. (2014). Polar coded spatial modulation. IET Communications, 8(9), 1459–1466.CrossRef
30.
Zurück zum Zitat Blasco-Serrano, R., Thobaben, R., Andersson, M., Rathi, V., & Skoglund, M. (2012). Polar codes for cooperative relaying. IEEE Transactions on Communications, 60(11), 3263–3273.CrossRef Blasco-Serrano, R., Thobaben, R., Andersson, M., Rathi, V., & Skoglund, M. (2012). Polar codes for cooperative relaying. IEEE Transactions on Communications, 60(11), 3263–3273.CrossRef
31.
Zurück zum Zitat Shin, D. M., Lim, S. C., & Yang, K. (2012). Mapping selection and code construction for \(2^m\)-ary polar-coded modulation. IEEE Communications Letters, 16(6), 905–908.CrossRef Shin, D. M., Lim, S. C., & Yang, K. (2012). Mapping selection and code construction for \(2^m\)-ary polar-coded modulation. IEEE Communications Letters, 16(6), 905–908.CrossRef
Metadaten
Titel
Coded cooperative spatial modulation based on multi-level construction of polar code
verfasst von
Shoaib Mughal
Fengfan Yang
HongJun Xu
Rahim Umar
Publikationsdatum
03.07.2018
Verlag
Springer US
Erschienen in
Telecommunication Systems / Ausgabe 3/2019
Print ISSN: 1018-4864
Elektronische ISSN: 1572-9451
DOI
https://doi.org/10.1007/s11235-018-0485-6

Weitere Artikel der Ausgabe 3/2019

Telecommunication Systems 3/2019 Zur Ausgabe