4.7 Article

Design and Performance Analysis of a Robust Multi-Carrier M-Ary DCSK System: A Noise Suppression Perspective

期刊

IEEE TRANSACTIONS ON COMMUNICATIONS
卷 70, 期 3, 页码 1623-1637

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCOMM.2022.3144276

关键词

Noise reduction; Receivers; Chaotic communication; Correlation; Codes; Transmitters; Fading channels; Chaotic communications; differential chaos shift keying; multi-carrier modulation; M-ary modulation; noise suppression algorithm; scaled Gaussian distribution

资金

  1. National Natural Science Foundation of China [61871337, 61671395]

向作者/读者索取更多资源

This study proposes a Noise Suppression aided Multi-Carrier M-ary Differential Chaos Shift Keying (NS-MC-MDCSK) system that utilizes orthogonal Walsh codes to improve energy efficiency. A noise suppression algorithm is proposed to reduce channel noise and improve the Bit Error Rate (BER) performance. The NS-MC-MDCSK system outperforms other chaotic communication systems.
A Noise Suppression aided Multi-Carrier M-ary Differential Chaos Shift Keying (NS-MC-MDCSK) system is proposed here where each information subcarrier transmits an M-ary information-bearing signal and the M-ary constellation symbols are constructed by orthogonal Walsh codes to improve the energy efficiency. Exploiting the redundant information available in the received signal, we propose a noise suppression algorithm to suppress channel noise in the reference and M-ary information-bearing signals. In the proposed algorithm, correlation coefficients detected between the received reference and information-bearing signals are fed back to suppress the noise corrupting the signal received. This method reduces the channel noise significantly and provides an outstanding Bit Error Rate (BER) performance. A performance analysis is performed for the NS-MC-MDCSK system over Additive White Gaussian Noise (AWGN) and multipath fading channels. Finally, the BER performance of the NS-MC-MDCSK system is compared to that of other chaotic communications systems. It is shown that the NS-MC-MDCSK system offers better BER performance than its competitors.

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