Title :
Performance of MIMO Relay DCSK-CD Systems Over Nakagami Fading Channels
Author :
Yi Fang ; Jing Xu ; Lin Wang ; Guanrong Chen
Author_Institution :
Dept. of Commun. Eng., Xiamen Univ., Xiamen, China
Abstract :
A multi-access multiple-input multiple-output (MIMO) relay differential chaos shift keying cooperative diversity (DCSK-CD) system is proposed in this paper as a comprehensive cooperation scheme, in which the relay and destination both employ multiple antennas to strengthen the robustness against signal fading in a wireless network. It is shown that, with spatial diversity gains, the bit error rate (BER) performance of the proposed system is remarkably better than the conventional DCSK non-cooperation (DCSK-NC) and DCSK cooperative communication (DCSK-CC) systems. Moreover, the exact BER and close-form expressions of the proposed system are derived over Nakagami fading channels through the moment generating function (MGF), which is shown to be highly consistent with the simulation results. Meanwhile, this paper illustrates a trade-off between the performance and the complexity, and provides a threshold for the number of relay antennas keeping the user consumed energy constant. Due to the above-mentioned advantages, the proposed system stands out as a good candidate or alternative for energy-constrained wireless communications based on chaotic modulation, especially for low-power and low-cost wireless personal area networks (WPANs).
Keywords :
MIMO communication; Nakagami channels; antenna arrays; cooperative communication; diversity reception; error statistics; personal area networks; BER performance; DCSK cooperative communication; DCSK non-cooperation; MIMO relay DCSK-CD systems performance; Nakagami fading channels; WPAN; bit error rate; comprehensive cooperation scheme; energy constant; energy-constrained wireless communications; moment generating function; multi-access multiple-input multiple-output; multiple antennas; relay antennas; relay differential chaos shift keying cooperative diversity; signal fading; spatial diversity gains; wireless network; wireless personal area networks; Bit error rate; Chaos; Fading; MIMO; Nakagami distribution; Relays; Signal to noise ratio; Bit error rate (BER); Nakagami fading channel; differential chaos shift keying cooperative diversity (DCSK-CD); multiple-input multiple-output (MIMO); relay;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2012.2215755