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Communications

Differential Spatial Modulation with Lattice Reduction Aided Pre-coding

REFERENCES

  • R. Y. Mesleh, H. Haas, S. Sinanovic, C. W. Ahn, and S. Yun, “Spatial modulation,” IEEE Trans. Veh. Technol., Vol. 57, no. 4, pp. 2228–2241, Jul. 2008.
  • J. Jeganathan, A. Ghrayeb, L. Szczecinski, and A. Ceron, “Space shift keying modulation for MIMO channels,” IEEE Trans. Wireless Commun., Vol. 8, no. 7, pp. 3692–3703, Aug. 2009.
  • A. Younis, N. Serafimovski, R. Mesleh, and H. Haas, “Generalised spatial modulation,” in Proceedings of the signals, systems and Computers, 2010, pp. 1498–1502.
  • J. Jeganathan, A. Ghrayeb, and L. Szczecinski, “Generalized space shift keying modulation for MIMO channels,” in Proceedings of the IEEE 19th International Symposium on Personal, Indoor and Mobile Radio Communications, Sep. 2008, pp. 1–5.
  • U. Singh, M. R. Bhatnagar, and T. A. Tsiftsis, “Feedback-based SSK modulation: Constellation design and performance results,” IEEE Trans. Commun., Vol. 68, no. 11, pp. 6902–6917, Nov. 2020.
  • M. Di Renzo, H. Haas, A. Ghrayeb, S. Sugiura, and L. Hanzo, “Spatial modulation for generalized MIMO: Challenges, opportunities and implementation,” Proc. IEEE, Vol. 102, no. 1, pp. 56–103, Jan. 2014.
  • M. Wen, B. Zheng, K. J. Kim, M. Di Renzo, T. Tsiftsis, K.-C. Chen, and N. A. Dhahir, “A survey on spatial modulation in emerging wireless systems: Research progresses and applications,” IEEE J. Sel. Areas Commun., Vol. 37, no. 9, pp. 1949–1972, Sep. 2019.
  • L. Yang, “Transmitter preprocessing aided spatial modulation for multiple-input multiple-output systems,” in Proceedings of the IEEE 73rd Vehicular Technology Conference—Spring, May 2011, pp. 1–5.
  • P. Yang, Y. L. Guan, Y. Xiao, M. D. Renzo, S. Li, and L. Hanzo, “Transmit precoded spatial modulation: Maximizing the minimum Euclidean distance versus minimizing the bit error ratio,” IEEE Trans. Wireless Commun., Vol. 15, no. 3, pp. 2054–2068, Mar. 2016.
  • L. Liu, et al., “Two low-complexity high-performance linear precoding schemes for secure spatial modulation,” Phys. Commun., Vol. 41, p. 101099, 2020. DOI:10.1016/j.phycom.2020.101099.
  • J. P. Pavia, V. Velez, B. Brogueira, N. Souto, and A. Correia, “Precoded generalized spatial modulation for downlink MIMO transmissions in beyond 5G networks,” Appl. Sci., Vol. 10, p. 6617, 2020.
  • J. Li, M. Wen, X. Cheng, Y. Yan, S. Song, and M. H. Lee, “Generalized precoding-aided quadrature spatial modulation,” IEEE Trans. Veh. Technol., Vol. 66, no. 2, pp. 1881–1886, Feb. 2017.
  • S. Kim, “Transmit antenna selection for precoding-aided spatial modulation,” IEEE. Access., Vol. 8, pp. 40723–40731, 2020.
  • C. Liu, L.-L. Yang, and W. Wang, “Transmitter-precoding-aided spatial modulation achieving both transmit and receive diversity,” IEEE Trans. Veh. Technol., Vol. 67, no. 2, pp. 1375–1388, Feb. 2018.
  • S. Gao, M. Zhang, and X. Cheng, “Precoded index modulation for multi-input multi-output OFDM,” IEEE Trans. Wireless Commun., Vol. 17, no. 1, pp. 17–28, Jan. 2018.
  • N. Ishikawa, and S. Sugiura, “Unified differential spatial modulation,” IEEE Wireless Commun. Lett., Vol. 3, no. 4, pp. 337–340, Aug. 2014.
  • Y. Bian, X. Cheng, M. Wen, L. Yang, H. V. Poor, and B. Jiao, “Differential spatial modulation,” IEEE Trans. Veh. Technol., Vol. 64, no. 7, pp. 3262–3268, Jul. 2015.
  • M. Wen, Z. Ding, X. Cheng, Y. Bian, H. V. Poor, and B. Jiao, “Performance analysis of differential spatial modulation with two transmit antennas,” IEEE Commun. Lett., Vol. 18, no. 3, pp. 475–478, Mar. 2014.
  • M. Zhang, M. Wen, X. Cheng, and L. Yang, “A dual-hop virtual MIMO architecture based on hybrid differential spatial modulation,” IEEE Trans. Wireless Commun., Vol. 15, no. 9, pp. 6356–6370, Sep. 2016.
  • R. Rajashekar, N. Ishikawa, S. Sugiura, K. V. S. Hari, and L. Hanzo, “Full-diversity dispersion matrices from algebraic field extensions for differential spatial modulation,” IEEE Trans. Veh. Technol., Vol. 66, no. 1, pp. 385–394, Jan. 2017.
  • C. Xu, P. Zhang, R. Rajashekar, N. Ishikawa, S. Sugiura, L. Wang, and L. Hanzo, “Finite-cardinality single-RF differential space-time modulation for improving the diversity-throughput tradeoff,” IEEE Trans. Commun., Vol. 67, no. 1, pp. 318–335, Jan. 2019.
  • D. Jose, and S. M. Sameer, “Differential transmission schemes for generalized spatial modulation,” IEEE Trans. Veh. Technol., Vol. 70, no. 12, pp. 12640–12650, Dec. 2021.
  • L. Xiao, Y. Xiao, P. Yang, J. Liu, S. Li, and W. Xiang, “Space-time block coded differential spatial modulation,” IEEE Trans. Veh. Technol., Vol. 66, no. 10, pp. 8821–8834, Oct. 2017.
  • T. P. Ngugen, X. N. Tran, M.-T. Le, and H. X. Nguyen, “Differential spatial modulation for high-rate transmission systems,” J. Wireless Commun. Netw., Vol. 6, 2018.
  • R. Mesleh, S. Althunibat, and A. Younis, “Differential quadrature spatial modulation,” IEEE Trans. Commun., Vol. 65, no. 9, pp. 3810–3817, Sep. 2017.
  • K. Kadathlal, H. Xu, and N. Pillat, “Generalised differential scheme for spatial modulation systems,” IET Commun., Vol. 11, no. 13, pp. 2020–2026, Sep. 2017.
  • P. A. Martin, “Differential spatial modulation for APSK in time-varying fading channels,” IEEE Commun. Lett., Vol. 19, no. 7, pp. 1261–1264, Jul. 2015.
  • M. Zhang, M. Wen, X. Cheng, and L. Yang, “Pre-coding aided differential spatial modulation,” in Proceedings of the IEEE Global Communications Conference, San Diego, CA, USA, Dec. 2015, pp. 1–6.
  • Y. Jia, Y. Fan, N. Wang, J. Zhu, X. Mu, and L. Yang, “Precoding normalized differential spatial modulation with non-constant modulus constellations,” in Proceedings of the IEEE International Conference on Communications (ICC), May 2019, pp. 1–5.
  • S. Kim, “Performance analysis of precoding-aided differential spatial modulation systems with transmit antenna selection,” ETRI J., Vol. 44, no. 1, pp. 117–124, 2022.
  • D. Wübben, D. Seethaler, J. Jaldén, and G. Matz, “Lattice reduction,” IEEE Signal Process. Mag., Vol. 28, no. 3, pp. 70–91, May 2011.
  • B. Gestner, W. Zhang, X. Ma, and D. V. Anderson, “Lattice reduction for MIMO detection: From theoretical analysis to hardware realization,” IEEE Trans. Circuits Syst. I, Reg. Papers, Vol. 58, no. 4, pp. 813–826, Apr. 2011.
  • Y. Gan, C. Ling, and W. Mow, “Complex lattice reduction algorithm for low-complexity full-diversity MIMO detection,” IEEE Trans. Signal Process., Vol. 57, no. 7, pp. 2701–2710, Jul. 2009.
  • C. Ling, W. H. Mow, and N. Howgrave-Graham, “Reduced and fixed-complexity variants of the LLL algorithm for communications,” IEEE Trans. Commun., Vol. 61, no. 3, pp. 1040–1050, Mar. 2013.
  • M. Taherzadeh, A. Mobasher, and A. K. Khandani, “LLL reduction achieves the receive diversity in MIMO decoding,” IEEE Trans. Inform. Theory, Vol. 53, no. 12, pp. 4801–4805, Dec. 2007.
  • S. Kim, “Novel receive antenna selection scheme for precoding-aided spatial modulation with lattice reduction,” Sensors, Vol. 8, 2020.

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