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Performance analysis for downlink massive multiple-input multiple-output system with channel state information delay under maximum ratio transmission precoding

机译:最大比率传输预编码下具有信道状态信息延迟的下行大规模多输入多输出系统的性能分析

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摘要

This study comprehensively investigates the performance of the downlink massive multiple-input multiple-output (MIMO) system with channel state information (CSI) delay, when the base station serves multiple user terminals (UTs) taking advantage of maximum ratio transmission precoding. Through the characteristic analysis of the received signal-to-interference-plus-noise ratio at UT, the tight lower bound of average area spectrum efficiency (SE) and its asymptotic bound with the infinite number of UTs are deduced, respectively. Based on the asymptotic bound and the realistic power consumption model consisting of both radiated power and circuit power, the trade-off between SE and energy efficiency (EE) is developed, and the optimal EE with respect to SE is attained concisely. Moreover, the approximate expressions of both outage probability and bit error ratio (BER) are derived when the massive MIMO system works at its interference limited region. All theoretical results coincide to numerical results, and they show that deploying more transmission antennas will be helpful to improve SE, EE and reliability simultaneously; SE will be enhanced; however, the reliability, including both outage probability and BER, will be worsened by multiplexing more UTs; enlarging CSI delay can extensively deteriorate SE, EE and reliability.
机译:当基站利用最大比率传输预编码为多个用户终端(UT)服务时,本研究全面研究具有信道状态信息(CSI)延迟的下行链路大规模多输入多输出(MIMO)系统的性能。通过对UT接收到的信噪比的特性分析,分别推导出平均面积频谱效率(SE)的严格下界及其与无限数量UT的渐近界。基于渐近界和由辐射功率和电路功率组成的实际功耗模型,开发了SE与能效(EE)之间的权衡,并简洁地获得了关于SE的最佳EE。此外,当大规模MIMO系统在其干扰受限区域工作时,可以得出中断概率和误码率(BER)的近似表达式。所有理论结果均与数值结果一致,表明部署更多的发射天线将有助于同时提高SE,EE和可靠性。 SE将得到增强;但是,通过复用更多的UT,可靠性(包括中断概率和BER)将恶化;增大CSI延迟会大大降低SE,EE和可靠性。

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