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Electrical PMD equalization methods for intensity modulated optical polarization multiplex transmission systems

机译:用于强度调制光偏振复用传输系统的电PMD均衡方法

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Polarization mode dispersion is the limiting factor in todays large capacity photonic network systems since it causes intersymbol interference especially at high data rates. When polarization multiplex is employed to increase spectral efficiency, the distortions caused by polarization mode dispersion get even stronger due to the additional polarization crosstalk. Employing coherent detection these mitigations can be fully compensated with linear filters, since coherent detection delivers amplitude, phase and polarization information of the electrical field. As a drawback we have to take into account a high complexity of the receiver, causing high overall cost. At the other hand we have direct detection systems where the receiver complexity can be kept low. Furthermore maximum likelihood sequence estimation detection has been successfully demonstrated for standard direct detection systems. In a first step an advanced maximum likelihood sequence estimation detector, which is able to work in an intensity modulated polarization multiplex direct detection system, is developed. The performance of the detector is assessed by simulations and it is shown that it is capable to significantly reduce system outages. The method then is compared with a least mean squares based equalizer which is employed to compensate for signal distortions in an intensity modulated polarization multiplex coherent detection transmission system.
机译:偏振模色散是当今大容量光子网络系统的限制因素,因为它会引起符号间干扰,尤其是在高数据速率下。当采用偏振复用来提高频谱效率时,由于附加的偏振串扰,由偏振模色散引起的失真会变得更加强烈。由于采用相干检测,可以提供电场的幅度,相位和极化信息,因此采用相干检测可以用线性滤波器完全补偿这些干扰。作为缺点,我们必须考虑接收器的高复杂性,从而导致高的总成本。另一方面,我们有直接检测系统,可以将接收器的复杂性保持在较低水平。此外,最大似然序列估计检测已被成功证明用于标准直接检测系统。第一步,开发了一种高级的最大似然序列估计检测器,该检测器能够在强度调制的偏振复用直接检测系统中工作。通过仿真评估检测器的性能,结果表明该检测器能够显着减少系统故障。然后将该方法与基于最小均方的均衡器进行比较,该均衡器用于补偿强度调制偏振复用相干检测传输系统中的信号失真。

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