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Performance Improvement of Space Shift Keying MIMO Systems with Orthogonal Codebook-Based Phase-Rotation Precoding

机译:基于正交码本的相位旋转预编码的空移键控MIMO系统的性能改进

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This paper considers codebook-based precoding for Space Shift Keying (SSK) modulation MIMO system. Codebook-based precoding avoids the necessity for full knowledge of Channel State Information (CSI) at the transmitter and alleviates the complexity of generating a CSI-optimized precoder. The receiver selects the codeword that maximizes the Minimum Euclidean Distance (MED) of the received constellation and feeds back its index to the transmitter. In this paper, we first develop a new accurate closed-form Bit Error Rate (BER) for SSK without precoding. Then, we investigate several phase-rotation codebooks with quantized set of phases and systematic structure. Namely, we investigate the Full-Combination, Walsh-Hadamard, Quasi-Orthogonal Sequences, and Orthogonal Array Testing codebooks. In addition, since the size of the Full-Combination codebook may be large, we develop an iterative search method for fast selection of its best codeword. The proposed codebooks significantly improve the BER performance in Rayleigh and Nakagami fading channels, even at high spatial correlation among transmit antennas and CSI estimation error. Moreover, we show that only four phases are sufficient and further phase granularity does yield significant gain. This avoids hardware multiplication during searching the codebook and applying the codeword.
机译:本文考虑了针对空移键控(SSK)调制MIMO系统的基于码本的预编码。基于码本的预编码避免了在发射机处全面了解信道状态信息(CSI)的必要性,并减轻了生成CSI优化的预编码器的复杂性。接收机选择使所接收星座图的最小欧几里得距离(MED)最大化的码字,并将其索引反馈给发射机。在本文中,我们首先为无需预编码的SSK开发了一种新的精确封闭格式误码率(BER)。然后,我们研究了具有量化的相位集和系统结构的几种相位旋转码本。即,我们研究了全组合,Walsh-Hadamard,准正交序列和正交阵列测试码本。另外,由于全组合码本的大小可能很大,因此我们开发了一种迭代搜索方法来快速选择其最佳码字。所提出的码本即使在发射天线之间的高空间相关性和CSI估计误差的情况下,也可以显着提高Rayleigh和Nakagami衰落信道中的BER性能。此外,我们显示仅四个阶段就足够了,并且进一步的阶段粒度确实会产生可观的收益。这避免了在搜索码本和应用码字期间的硬件乘法。

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