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Constraints in channel shortening equalizer design for DMT-based systems

机译:基于DMT的系统的信道缩短均衡器设计的约束

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摘要

In discrete multitone receivers, a time domain equalizer (TEQ) is used to shorten the channel impulse response, so that the equalized channel impulse response is shorter than the inserted prefix. The aim of this paper is to show that the minimum mean square error (MMSE) channel shortening problem with two different energy constraints, remarkably, lead to the same TEQ coefficients, up to a scaling factor. Moreover, implying the two energy constraints together in the MMSE optimization again yields the same result and comes down to a canonical correlation analysis between the subspace spanned by the transmitted samples and the received samples, respectively. Hence, the TEQ obtained by these three distinct MMSE cases yields the same performance in terms of bit rate. Since the resulting problem can easily be reformulated as a maximization problem, an iterative procedure based on power iterations can be devised to reduce the computational complexity.
机译:在离散多音接收器中,使用时域均衡器(TEQ)来缩短信道冲激响应,以使均衡的信道冲激响应比插入的前缀短。本文的目的是显示具有两个不同能量约束的最小均方误差(MMSE)通道缩短问题,显着导致相同的TEQ系数,直至比例因子。此外,在MMSE优化中同时暗示这两个能量约束会再次产生相同的结果,并且可以归结为分别由发送样本和接收样本跨越的子空间之间的规范相关分析。因此,通过这三种不同的MMSE情况获得的TEQ就比特率而言具有相同的性能。由于产生的问题可以很容易地重新构造为最大化问题,因此可以设计基于幂次迭代的迭代过程以降低计算复杂性。

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