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Interleaving-Based Cyclic Delay Diversity OFDM Systems over Spatially Correlated Channels

机译:空间相关信道上基于交织的循环延迟分集OFDM系统

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摘要

Cyclic delay diversity employing multiple transmit antenna provides increased frequency selectivity and thereby improves the frequency diversity in coded orthogonal frequency division multiplexing (OFDM). However, spatial correlation due to insufficient spacing between transmit antennas degrades the diversity performance. In this paper, the correlation of effective channel frequency response (CFR) of CDD OFDM is analysed and then propose constellation rotation and adjacent interleaving (CRAI) scheme over spatially correlated channel. In the proposed scheme, the subcarrier constellation is rotated by a known angle and then imaginary parts of rotated adjacent subcarriers are interleaved. The squared Euclidean distance of the codewords is derived to show the effect of constellation rotation. Adjacent interleaving is shown to exploit the frequency diversity by reducing the variation in average channel power (ACP) due to spatial correlation. Simulation results reveal that the proposed scheme performs well in spatial correlated channel and thereby improves the bit error rate (BER) performance.
机译:采用多个发射天线的循环延迟分集提供了增加的频率选择性,从而改善了编码正交频分复用(OFDM)中的频率分集。然而,由于发射天线之间的间隔不足而引起的空间相关性降低了分集性能。本文分析了CDD OFDM的有效信道频率响应(CFR)的相关性,然后提出了空间相关信道上的星座旋转和相邻交织(CRAI)方案。在提出的方案中,将子载波星座旋转已知角度,然后对旋转的相邻子载波的虚部进行交织。推导码字的平方欧几里得距离以显示星座旋转的影响。相邻交织通过减少由于空间相关性引起的平均信道功率(ACP)的变化,可以利用频率分集。仿真结果表明,该方案在空间相关信道中表现良好,从而提高了误码率(BER)性能。

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