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首页> 外文期刊>IEEE Transactions on Communications >Adaptive analog equalization and receiver front-end control for multilevel partial-response transmission over metallic cables
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Adaptive analog equalization and receiver front-end control for multilevel partial-response transmission over metallic cables

机译:自适应模拟均衡和接收器前端控制,用于金属电缆上的多级部分响应传输

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摘要

This paper deals with multilevel partial-response class-IV (PRIV) transmission over unshielded twisted-pair (UTP) cables. Specifically, transmission at a rate of 155.52 Mb/s over data-grade UTP cables for local-area networking is considered. As a low-complexity method used to compensate for cable-length dependent signal distortion, adaptive analog equalization with two controlled parameters is proposed: one parameter determines a frequency-independent receiver gain, the other parameter controls the transfer characteristic of a variable analog receive-filter section. For the stepwise design of the transmit and receive filters, a combination of analytic techniques and simulated annealing is employed. First, the variable equalizer section, then the remaining fixed analog receive filter section are developed and finally the analog transmit filter is determined. The paper also describes the adjustment of the equalizer section, and the control of the sampling phase in the receiver front-end. The two equalizer parameters are controlled by an algorithm that operates on the sampled signals and adjusts these parameters to optimum settings independently of the sampling phase. The latter is controlled by a decision-directed phase-locked loop algorithm that becomes effective when equalization has been achieved. The dynamic behaviour and mean-square error in steady-state obtained with these control algorithms are investigated.
机译:本文讨论了通过非屏蔽双绞线(UTP)电缆进行的多级部分响应IV类(PRIV)传输。具体来说,考虑了通过局域网上的数据级UTP电缆以155.52 Mb / s的速率进行传输。作为一种用于补偿电缆长度相关信号失真的低复杂度方法,提出了具有两个受控参数的自适应模拟均衡:一个参数确定与频率无关的接收器增益,另一个参数控制可变模拟接收器的传输特性,过滤器部分。对于发射和接收滤波器的逐步设计,采用了分析技术和模拟退火的组合。首先,可变均衡器部分,然后是剩余的固定模拟接收滤波器部分,最后确定模拟发射滤波器。本文还介绍了均衡器部分的调整以及接收机前端中采样相位的控制。这两个均衡器参数由一种算法控制,该算法对采样信号进行操作,并独立于采样相位将这些参数调整为最佳设置。后者由决策控制的锁相环算法控制,该算法在达到均衡后生效。研究了用这些控制算法获得的动态行为和稳态均方误差。

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