An error propagation prevention method for MIMO-OFDM RLS-DDCE-algorithms

P. Beinschob, M. Lieberei, U. Zölzer
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引用次数: 2

Abstract

In this paper issues in the implementation of a recursive least squares (RLS) Multiple-Input Multiple-Output (MIMO) decision-directed channel estimation (DDCE) and tracking algorithm for Spatial Multiplexing are discussed. Problems addressed are a simple calculation of the inverse autocorrelation matrix and schemes of training data or pilot symbols. While there is much work spend in evaluating pilot performances, the choice of pilot symbols cannot be decided based only on simulations. Three proposed schemes are discussed regarding off-the-shelf RF components' compatibility of an experimental MIMO system where polyphase pilots fail to yield good results. Because decision-directed channel estimation is prone to error propagation, we propose a scheme which makes a check on recovered symbol plausability by using the result from the Channel Decoder thus preventing error propagation.
MIMO-OFDM rls - dce算法的误差传播预防方法
本文讨论了用于空间复用的递推最小二乘(RLS)多输入多输出(MIMO)决策导向信道估计(DDCE)和跟踪算法的实现问题。解决的问题是逆自相关矩阵的简单计算和训练数据或导频符号的方案。在对导频性能进行评估的同时,导频符号的选择不能仅仅根据仿真来决定。针对实验MIMO系统中多相导频无法产生良好结果的情况,讨论了三种现成射频元件的兼容性方案。由于决策导向的信道估计容易产生错误传播,我们提出了一种利用信道解码器的结果对恢复的符号可信性进行检查的方案,从而防止错误传播。
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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