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首页> 外文期刊>IEEE Transactions on Signal Processing >A Novel Receiver Design and Maximum-Likelihood Detection for Distributed MIMO Systems in Presence of Distributed Frequency Offsets and Timing Offsets
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A Novel Receiver Design and Maximum-Likelihood Detection for Distributed MIMO Systems in Presence of Distributed Frequency Offsets and Timing Offsets

机译:存在分布式频率偏移和定时偏移的分布式MIMO系统的新型接收器设计和最大似然检测

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In distributed multi-input multi-output (MIMO) systems, antennas may not be able to utilize common oscillators at the transmitter side or the receiver side. Consequently, there are multiple carrier frequency offsets (CFOs) and multiple timing offsets (TOs) due to distributed antennas that may significantly degrade the system performance if not properly addressed. In this paper, we analyze the effect of multiple CFOs and multiple TOs on receiver signal energy at the front end of each receive antenna pulse matched filter output in a distributed MIMO system. We then propose a novel receiver design for distributed MIMO systems that can accommodate multiple CFOs and multiple TOs. The proposed receiver structure utilizes a bank of pulse matched filters at each receive antenna where each filter accommodates one CFO specifically. Each filter output is then sampled at the symbol rate, with sampling timing selected according to the corresponding TO, followed by an information symbol detector. For the proposed receiver configuration, we derive the maximum-likelihood (ML) symbol detector for both space-time block coded and uncoded distributed MIMO systems. In addition, we design sub-optimal detectors and show that under certain conditions, the sub-optimal detectors perform close to the ML-optimal detector with significantly lower complexities. Extensive simulation studies illustrate our theoretical development for distributed MIMO systems with various transceiver configurations and channel conditions. The simulation results indicate that the proposed receiver structure together with the ML detection offers significant performance gains compared to the current state of the art.
机译:在分布式多输入多输出(MIMO)系统中,天线可能无法使用发射器侧或接收器侧的公共振荡器。因此,由于分布式天线而导致的多个载波频率偏移量(CFO)和多个定时偏移量(TO)可能会严重降低系统性能(如果未正确解决)。在本文中,我们分析了分布式MIMO系统中每个接收天线脉冲匹配滤波器输出前端的多个CFO和多个TO对接收器信号能量的影响。然后,我们为分布式MIMO系统提出了一种新颖的接收器设计,它可以容纳多个CFO和多个TO。所提出的接收机结构在每个接收天线处利用一组脉冲匹配滤波器,其中每个滤波器专门容纳一个CFO。然后,以符号速率对每个滤波器的输出进行采样,并根据相应的TO选择采样时序,然后是信息符号检测器。对于建议的接收器配置,我们为空时分组编码和未编码分布式MIMO系统推导了最大似然(ML)符号检测器。此外,我们设计了次优检测器,并表明在某些条件下,次优检测器的性能接近于ML最佳检测器,并且复杂度明显较低。大量的仿真研究说明了我们针对具有各种收发器配置和信道条件的分布式MIMO系统的理论发展。仿真结果表明,与现有技术相比,拟议的接收机结构以及ML检测可显着提高性能。

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