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Maximum-likelihood sequence estimation in dispersive optical channels

机译:色散光信道中的最大似然序列估计

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This paper discusses the investigation of maximum-likelihood sequence estimation (MLSE) receivers operating on intensity-modulated direct-detection optical channels. The study focuses on long-haul or metro links spanning several hundred kilometers of single-mode fiber with optical amplifiers. The structure of MLSE-based optical receivers operating in the presence of dispersion and amplified spontaneous emission (ASE), as well as shot and thermal noise, are discussed, and a theory of the error rate of these receivers is developed. Computer simulations show a close agreement between the predictions of the theory and simulation results. Some important implementation issues are also addressed. Optical channels suffer from impairments that set them apart from other channels, and therefore they need a special investigation. Among these impairments are the facts that the optical channel is nonlinear, and noise is often non-Gaussian and signal dependent. For example, in optically amplified single-mode fiber links, the dominant source of noise is ASE noise, which after photodetection is distributed according to a noncentral chi-square probability density function. In addition, optical fibers suffer from chromatic and polarization-mode dispersion (PMD). Although the use of MLSE in optical channels has been discussed in previous literature, no detailed analysis of optical receivers using this technique has been reported so far. This motivates the study reported in this paper.
机译:本文讨论了在强度调制直接检测光信道上工作的最大似然序列估计(MLSE)接收机的研究。这项研究的重点是通过光放大器,跨越数百公里的单模光纤的长途或城域链路。讨论了在色散和放大的自发辐射(ASE)存在下工作的基于MLSE的光接收机的结构,以及散粒和热噪声,并发展了这些接收机的误码率理论。计算机仿真表明,理论预测与仿真结果之间有着紧密的一致性。还解决了一些重要的实施问题。光通道遭受的损害使它们与其他通道区分开,因此需要进行特殊调查。在这些损害中,有一个事实是光通道是非线性的,并且噪声通常是非高斯和信号相关的。例如,在光放大的单模光纤链路中,主要的噪声源是ASE噪声,它在光检测之后根据非中心卡方概率密度函数分布。另外,光纤遭受色散和偏振模色散(PMD)。尽管在先前的文献中已经讨论了在光信道中使用MLSE,但是到目前为止,尚未报道使用这种技术的光接收器的详细分析。这激发了本文报道的研究。

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