Minimum BER criteria for DFE in Optical Communication System

G. Katz, D. Sadot
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Abstract

As the link distance or the data rate increase intersymbol interference (ISI) caused by chromatic dispersion increases and ISI mitigation becomes an important issue. The demand for reducing cost per gigabytes is one of the main reasons for using electronic equalizers which are very cost-effective. The common and useful optimization criterion to estimate the DFE coefficients is the minimum mean square error (MMSE). However, the MMSE solution does not achieve optimal performances, and the minimum BER (MBER) is the ultimate performances criterion. Here, we derive an analytical expression for the probability of error with DFE and examine the optimal optimization criterion, MBER for DFE in optical communication system. A BER performance comparison analysis shows that the MBER optimization criterion introduces improvements over the conventional minimum MSE optimization criterion.
光通信系统DFE最小误码率准则
随着链路距离或数据速率的增加,由色散引起的码间干扰增加,码间干扰的抑制成为一个重要的问题。降低每千兆字节成本的需求是使用非常具有成本效益的电子均衡器的主要原因之一。估计DFE系数的常用优化准则是最小均方误差(MMSE)。然而,MMSE方案并不能达到最优性能,最小误码率(MBER)是最终的性能标准。本文推导了DFE误差概率的解析表达式,并研究了光通信系统中DFE的最优优化准则MBER。对误码性能的比较分析表明,MBER优化准则比传统的最小MSE优化准则有了改进。
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