A multi-delay whitening approach to blind identification and equalization of SIMO channels

Jitendra Tugnait
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Abstract

Blind channel estimation and blind equalization of SIMO (single-input multiple-output) communication channels is considered using only the second-order statistics of the data. Estimation of (partial) channel impulse response and design of finite-length MMSE (minimum mean-square error) blind equalizers is investigated. The basis of the approach is the design of multiple zero-forcing equalizers that whiten the noise-free data at multiple delays. In the past such an approach has been considered using just one zero-forcing equalizer at zero-delay. Infinite impulse response (IIR) channels are allowed. The proposed approach also works when the "sub-channel" transfer functions have common zeros so long as the common zeros are minimum-phase zeros. The channel length or model orders need not be known. An illustrative simulation example is provided.
一种基于多时延白化的SIMO信道盲识别与均衡方法
考虑单输入多输出通信信道的盲信道估计和盲均衡,仅使用数据的二阶统计量。研究了(部分)信道脉冲响应估计和有限长度最小均方误差盲均衡器的设计。该方法的基础是设计多个强制零均衡器,在多个延迟下对无噪声数据进行白化。在过去,这种方法被认为只使用一个零延迟的零强制均衡器。允许无限脉冲响应(IIR)通道。当“子通道”传递函数具有公共零时,只要公共零是最小相位零,所提出的方法也有效。不需要知道通道长度或模型顺序。给出了一个说明性的仿真示例。
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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