Joint optimization of transceivers with decision feedback and bit loading

Ching-Chih Weng, Chun-Yang Chen, P. Vaidyanathan
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引用次数: 4

Abstract

The transceiver optimization problem for MIMO channels has been considered in the past with linear receivers as well as with decision feedback (DFE) receivers. Joint optimization of bit allocation, precoder, and equalizer has in the past been considered only for the linear transceiver (transceiver with linear precoder and linear equalizer). It has also been observed that the use of DFE even without bit allocation in general results in better performance that linear transceivers with bit allocation. This paper provides a general study of this for transceivers with the zero-forcing constraint. It is formally shown that when the bit allocation, precoder, and equalizer are jointly optimized, linear transceivers and transceivers with DFE have identical performance in the sense that transmitted power is identical for a given bit rate and error probability. The developments of this paper are based on the generalized triangular decomposition (GTD) recently introduced by Jiang, Li, and Hager. It will be shown that a broad class of GTD-based systems solve the optimal DFE problem with bit allocation. The special case of a linear transceiver with optimum bit allocation will emerge as one of the many solutions.
具有决策反馈和位加载的收发器联合优化
MIMO信道的收发器优化问题在线性接收机和决策反馈(DFE)接收机中已经被考虑过。位分配、预编码器和均衡器的联合优化在过去只被考虑用于线性收发器(带线性预编码器和线性均衡器的收发器)。还观察到,即使没有比特分配,使用DFE通常也会比具有比特分配的线性收发器具有更好的性能。本文对具有零强迫约束的收发器进行了一般性的研究。正式表明,当比特分配、预编码器和均衡器共同优化时,线性收发器和具有DFE的收发器具有相同的性能,即在给定的比特率和错误概率下传输功率相同。本文的发展是基于最近由Jiang, Li和Hager提出的广义三角分解(GTD)。本文将表明,一类基于gtd的系统解决了具有位分配的最优DFE问题。具有最佳位分配的线性收发器的特殊情况将成为众多解决方案之一。
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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