基于期望最大化算法的大规模mimo上行通信相位噪声补偿

IF 2.9 3区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS Journal of Communications and Networks Pub Date : 2024-11-20 DOI:10.23919/JCN.2024.000025
Alberto Tarable;Francisco J. Escribano
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引用次数: 0

摘要

相位噪声(PN)是MIMO系统中的一个主要干扰,其中发射器和接收器侧不同振荡器的贡献可能会降低整体性能并抵消MIMO技术提供的增益。这在大规模MIMO的情况下更为重要,因为PN源的数量可能会大幅增加。在这项工作中,我们提出了一个基于应用期望最大化算法的迭代接收器。我们考虑了一个具有振荡器与天线一般关联的大规模MIMO框架,并包括其他信道干扰,如不完美信道状态信息和块衰落。在每次接收迭代中,给定传输符号的信息,使用最陡下降来估计PN样本,并使用优化的自适应步长和基于阈值的停止规则。几个测试用例的结果表明,误码率和均方误差可以从所提出的相位检测算法中受益,甚至达到与没有PN存在的情况下相同的性能,提供比最先进的替代方案更好的结果。对结果的进一步分析可以得出关于最终性能和资源消耗的一些有用的权衡。
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Compensation of phase noise in massive-MIMO uplink communications based on expectation-maximization algorithm
Phase noise (PN) is a major disturbance in MIMO systems, where the contribution of different oscillators at the transmitter and the receiver side may degrade the overall performance and offset the gains offered by MIMO techniques. This is even more crucial in the case of massive MIMO, since the number of PN sources may increase considerably. In this work, we propose an iterative receiver based on the application of the expectation-maximization algorithm. We consider a massive MIMO framework with a general association of oscillators to antennas, and include other channel disturbances like imperfect channel state information and Rician block fading. At each receiver iteration, given the information on the transmitted symbols, steepest descent is used to estimate the PN samples, with an optimized adaptive step size and a threshold-based stopping rule. The results obtained for several test cases show how the bit error rate and mean square error can benefit from the proposed phase-detection algorithm, even to the point of reaching the same performance as in the case where no PN is present, offering better results than a state-of-the-art alternative. Further analysis of the results allow to draw some useful trade-offs respecting final performance and consumption of resources.
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来源期刊
CiteScore
6.60
自引率
5.60%
发文量
66
审稿时长
14.4 months
期刊介绍: The JOURNAL OF COMMUNICATIONS AND NETWORKS is published six times per year, and is committed to publishing high-quality papers that advance the state-of-the-art and practical applications of communications and information networks. Theoretical research contributions presenting new techniques, concepts, or analyses, applied contributions reporting on experiences and experiments, and tutorial expositions of permanent reference value are welcome. The subjects covered by this journal include all topics in communication theory and techniques, communication systems, and information networks. COMMUNICATION THEORY AND SYSTEMS WIRELESS COMMUNICATIONS NETWORKS AND SERVICES.
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