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MMSE cyclic equalization

机译:MMSE循环均衡

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摘要

In digital communications, conventional linear and decision feedback equalizers are optimal for stationary signals. However, modulated signals are polycyclostationary (PCS): their correlation functions are time-polyperiodic. Cyclic equalization structures optimized by the MMSE (minimum mean square error) criterion are proposed. The proposed structure is based on a multidimensional input. The latter is built from the received signal possibly shifted by its cyclic frequencies. We show by simulation that the proposed cyclic structures give better performance in terms of binary error rate than the conventional equalizers. The paper is organized as follows. First, we review some background topics on cyclostationarity and optimum filtering of PCS signals. Then we calculate the expressions of the forward and backward filters for the cyclic DFE and deduce the expression of the linear cyclic equalizer. Finally, simulation results of conventional and cyclic equalizers are given for BPSK and MSK signals jammed by other modulated signals. The new cyclic structures are particularly suitable for FDMA networks disturbed by adjacent channel interference (ACI). They can lead to a significant improvement in the number of communication channels within a given bandwidth. Besides, cyclic structures can also be used for transmission links disturbed by jammers that are modulated signals with the same or different baud rates.
机译:在数字通信中,传统的线性和判定反馈均衡器对于静止信号是最佳的。然而,调制信号是多循环(PC):它们的相关函数是时间多发性的。提出了由MMSE(最小均方误差)标准优化的循环均衡结构。所提出的结构基于多维输入。后者由可能由其循环频率移位的接收信号构建。我们通过模拟显示所提出的循环结构在比传统均衡器的二进制错误率方面具有更好的性能。本文的结构如下。首先,我们审查了一些关于循环信号的背景主题和PCS信号的最佳滤波。然后,我们计算用于循环DFE的前向和向后滤波器的表达,并推导线性循环均衡器的表达。最后,给出了传统和循环均衡器的仿真结果,并由其他调制信号卡住的BPSK和MSK信号。新的循环结构特别适用于由相邻信道干扰(ACI)干扰的FDMA网络。它们可以导致给定带宽内的通信信道数量的显着改进。此外,循环结构也可用于被动干扰器干扰的传输链路,其被调制的信号具有相同或不同的波特率。

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