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Semi-blind joint phase tracking, parameter estimation and detection in the context of nonlinear channels with memory

机译:带有存储器的非线性通道中的半盲联合相位跟踪,参数估计和检测

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摘要

We consider a transmission system, where the emitted symbols are subject to unknown nonlinear intersymbol interference. Several methods have been proposed in the literature to mitigate the degradation introduced by such channels. However, the problem of nonlinear channel identification in the presence of carrier phase noise has not been addressed previously. In this paper, we derive an iterative receiver structure to detect the transmitted symbols, jointly with phase and channel estimation. At each iteration, the channel parameters are refined based on the expectation-maximization (EM) approach. Also, a pseudo maximum-likelihood (pseudo-ML) carrier recovery, operating in a decision-directed mode, re-estimates the time-varying phase at each iteration. The proposed technique is semi-blind, since a short training sequence is needed to initialize the phase and channel coefficients properly. We show that the proposed scheme allows symbol detection performances close to the genie-aided detector with data-aided channel coefficient estimation. Moreover, a theoretical analysis of the residual phase error confirms that coherent detection in the presence of strong phase noise is achieved. Numerical simulations are presented for systems with severe nonlinear distortions, including satellite communications with nonlinear amplifiers and coherent optical fiber transmissions.
机译:我们考虑一种传输系统,其中发射的符号会受到未知的非线性符号间干扰。在文献中已经提出了几种方法来减轻这种通道引起的退化。但是,先前没有解决在存在载波相位噪声的情况下进行非线性信道识别的问题。在本文中,我们结合相位和信道估计,推导了一种迭代的接收器结构来检测传输的符号。在每次迭代时,都会基于期望最大化(EM)方法精炼信道参数。此外,以决策导向模式运行的伪最大似然(pseudo-ML)载波恢复会在每次迭代时重新估计时变阶段。所提出的技术是半盲的,因为需要短的训练序列来适当地初始化相位和信道系数。我们表明,所提出的方案允许符号检测性能接近具有数据辅助信道系数估计的精灵辅助检测器。此外,对残余相位误差的理论分析证实,在存在强相位噪声的情况下可以实现相干检测。提出了具有严重非线性失真的系统的数值模拟,包括带有非线性放大器的卫星通信和相干光纤传输。

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