Energy-Efficient Power Loading for a MIMO-SVD System and Its Performance in Flat Fading

R. Prabhu, B. Daneshrad
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引用次数: 70

Abstract

In this paper we formulate a power loading problem for the spatial subchannels (parallel channels) of a single-carrier MIMO-SVD system. The power loading solution is designed to minimize the energy-per-goodbit (EPG) of the MIMO-SVD system. The optimum power loading obtained by solving a nonlinear fractional program, has a closed-form expression and is found by applying a water-filling procedure. It is observed that the optimum total transmit power (water level) depends not only on the MIMO channel realization, but also on the ratio of circuit power cost (which depends on the number of antennas) to transmit power cost (which depends on path loss and other factors). We study the statistical performance (using simulation) of the solution in Rayleigh and Rician flat-fading channels. Using outage EPG as a measure of performance, we determine the MIMO configuration (from a set of allowed configurations) that yields the minimum outage EPG. It is observed that the average number of spatial subchannels utilized (which indicates preference for diversity or multiplexing) depends on the ratio of circuit power cost to transmit power cost and fading type (Rayleigh or Rician). For both cases, the results show that both multiplexing and diversity obtained by MIMO systems are critical for energy efficiency.
MIMO-SVD系统的节能负载及其平衰落性能
本文给出了单载波MIMO-SVD系统空间子信道(平行信道)的功率加载问题。功率加载解决方案旨在最大限度地降低MIMO-SVD系统的每比特能量(EPG)。通过求解非线性分式程序得到的最优功率负荷具有封闭表达式,并采用充水程序求解。观察到,最优总发射功率(水位)不仅取决于MIMO信道的实现,还取决于电路功率成本(取决于天线数量)与发射功率成本(取决于路径损耗等因素)之比。通过仿真研究了该方案在瑞利和瑞利平衰落信道中的统计性能。使用停机EPG作为性能度量,我们(从一组允许的配置中)确定产生最小停机EPG的MIMO配置。可以观察到,利用的空间子信道的平均数量(表明对分集或多路复用的偏好)取决于电路功率成本与传输功率成本的比率和衰落类型(瑞利或瑞利)。对于这两种情况,结果表明MIMO系统获得的多路复用和分集对能源效率至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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