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Adaptive equalization and diversity combining for mobile radio using interpolated channel estimates

机译:使用插值信道估计的移动无线电自适应均衡和分集组合

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The authors demonstrate the feasibility of a digital cellular radio (DCR) system which employs a jointly adaptive decision-feedback equalizer and diversity combiner. In particular, the authors utilize the current estimates of the channel impulse response (CIR) at each diversity branch to compute the receiver parameters periodically. The authors propose a novel block-adaptive strategy which computes the time-varying CIR by interpolating a set of CIR estimates obtained through periodic training. Although incurring some inherent processing delay and throughput reduction, this interpolation strategy has the advantage of immunity to decision errors which would quite likely occur during a deep fade. It is shown that the system performance is limited, in the form of an irreducible bit error rate at high signal-to-noise ratios (SNRs), by the CIR estimation of the rapidly fading channel.
机译:作者演示了采用联合自适应决策反馈均衡器和分集组合器的数字蜂窝无线电(DCR)系统的可行性。特别是,作者利用每个分集分支处的信道冲激响应(CIR)的当前估计值来定期计算接收器参数。作者提出了一种新颖的块自适应策略,该策略通过对通过定期训练获得的一组CIR估计值进行插值来计算随时间变化的CIR。尽管会引起一些固有的处理延迟和吞吐量降低,但是这种插值策略的优势在于可以抵抗决策错误,而决策错误很可能会在深度衰落期间发生。结果表明,系统性能受到快速衰落信道的CIR估计的限制,表现为在高信噪比(SNR)下无法降低的误码率。

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