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Cyclic space-frequency filtering for BICM-OFDM systems with multiple co-located or distributed transmit antennas

机译:具有多个并置或分布式发射天线的BICM-OFDM系统的循环空频滤波

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摘要

In this paper, we introduce cyclic space-frequency (CSF) filtering for orthogonal frequency division multiplexing (OFDM) systems using bit-interleaved coded modulation (BICM) and multiple transmit antennas for fading mitigation, and discuss the extension to orthogonal frequency division multiple access (OFDMA) systems. CSF filtering is a simple form of space-frequency coding (SFC) and may be viewed as a generalization of cyclic delay diversity (CDD) where the cyclic delays are replaced by CSF filters. CSF is applicable to both traditional multiple-input multiple-output systems with co-located transmit antennas and cooperative diversity systems with decode-and-forward relaying and distributed transmit antennas. Similar to CDD and in contrast to other SFC schemes, CSF filtering does not require any changes to the receiver compared to single-antenna transmission. Based on the asymptotic pairwise error probability of the overall system we derive an optimization criterion for the CSF filters for co-located and distributed transmit antennas, respectively. We show that the optimum CSF filters are independent of the interleaver if they do not exceed a certain length. If this length is exceeded, the adopted interleaver has to be carefully taken into account in the CSF filter design. For several special cases we derive closed-form solutions for the optimum CSF filters and for the general case we provide various CSF filter design methods. Our simulation results show that CSF filtering can achieve significant performance gains over existing CDD schemes.
机译:在本文中,我们介绍了使用比特交织编码调制(BICM)和多个发射天线来减轻衰落的正交频分复用(OFDM)系统的循环空频(CSF)滤波,并讨论了对正交频分多址的扩展(OFDMA)系统。 CSF滤波是空频编码(SFC)的一种简单形式,可以看作是循环延迟分集(CDD)的概括,其中循环延迟由CSF滤波器代替。 CSF既适用于具有并置发射天线的传统多输入多输出系统,也适用于具有解码转发中继和分布式发射天线的协作分集系统。与CDD相似,与其他SFC方案相反,与单天线传输相比,CSF滤波不需要对接收器进行任何更改。基于整个系统的渐近成对误差概率,我们分别推导了针对共同定位和分布式发射天线的CSF滤波器的优化准则。我们表明,如果最佳CSF滤波器不超过一定长度,则它们与交织器无关。如果超过此长度,则在CSF滤波器设计中必须仔细考虑采用的交织器。对于几种特殊情况,我们得出了最佳CSF滤波器的闭式解,对于一般情况,我们提供了各种CSF滤波器设计方法。我们的仿真结果表明,相比现有的CDD方案,CSF过滤可以显着提高性能。

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