Multiple phase decoder for MIMO systems

Zhi Quan, Y. Zakharov, Junruo Zhang
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引用次数: 5

Abstract

In this paper, we propose a multiple phase decoder (MPD) for MIMO communication systems with M-PSK signals. The proposed decoder is based on a phase descent search (PDS) algorithm. The PDS algorithm is based on coordinate descent iterations and constraints elements of the solution to have unit magnitudes. In the MPD, the PDS algorithm is used multiple times with different initializations. The solution from the PDS algorithm with the minimum cost is chosen as the final solution of the proposed decoder. Simulation results show that, for QPSK modulation, the proposed decoder can approach the performance of the Maximum Likelihood decoder. Comparing to the sphere decoder, the MPD offers a lower complexity, especially at low signal-to-noise ratios and with a large number of transmit antennas. Thus the proposed decoder may be regarded as an alternative to the sphere decoder for MIMO systems.
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用于MIMO系统的多相解码器
在本文中,我们提出了一种多相解码器(MPD),用于多相psk信号的MIMO通信系统。该解码器基于相位下降搜索(PDS)算法。PDS算法基于坐标下降迭代,并约束解的元素具有单位大小。在MPD中,PDS算法以不同的初始化方式被多次使用。选择代价最小的PDS算法解作为解码器的最终解。仿真结果表明,对于QPSK调制,所提出的解码器可以接近最大似然解码器的性能。与球形解码器相比,MPD具有更低的复杂性,特别是在低信噪比和大量发射天线的情况下。因此,所提出的解码器可被视为用于MIMO系统的球体解码器的替代方案。
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