Decision-Directed MIMO Channel Tracking with Efficient Error Propagation Mitigation

Emna Eitel, J. Speidel
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引用次数: 3

Abstract

We treat decision-directed tracking of fast-varying MIMO channels by applying the Kalman filter. The Kalman filter is considered but the suggested algorithm is applicable independently of the tracking technique. In the decision-directed mode, tracking filters suffer from error propagation caused by wrongly detected data. To mitigate the error propagation, a recently suggested pilot on request training is applied. Appropriate metrics to detect the filter divergence were developed in the past but these metrics strongly depend on the tracking algorithm. In this paper, we design a metric which solely depends on the estimated channel. The metric threshold is derived analytically and is shown to be SNR-independent on a large SNR range. We show the effectiveness of the pilot on request training with the novel metric in both reducing the BER and saving bandwidth.
决策导向MIMO信道跟踪与有效的误差传播抑制
我们通过应用卡尔曼滤波器来处理快速变化的MIMO信道的决策导向跟踪。考虑了卡尔曼滤波,但所提出的算法可以独立于跟踪技术而适用。在决策导向模式下,跟踪滤波器受到错误检测数据导致的误差传播的影响。为了减少误差的传播,采用了最近提出的飞行员随叫随到训练。过去已经开发了适当的度量来检测滤波器发散,但这些度量强烈依赖于跟踪算法。在本文中,我们设计了一个仅依赖于估计信道的度量。度量阈值是解析导出的,并且在较大的信噪比范围内与信噪比无关。我们用新度量证明了飞行员随叫随到训练在降低误码率和节省带宽方面的有效性。
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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