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Constellation Shaping for Fiber-optic Channels with QAM and High Spectral Efficiency

机译:具有Qam和高光谱效率的光纤通道的星座整形

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摘要

In this letter the fiber-optic communication channel with Quadrature Amplitude Modulation (QAM) input constella- tion is treated. Using probabilistic shaping, we show that high order QAM constellations can achieve and slightly exceed the lower bound on the channel capacity, set by ring constellations in [1]. We then propose a mapping function for turbo coded bit interleaved coded modulation based on optimization of the mu- tual information between the channel input and output. Using this mapping, spectral efficiency as high as 6.5 bits/s/Hz/polarization is achieved on a simulated single channel long-haul fiber-optical link excluding the pilot overhead, used for synchronization, and taking into account frequency and phase mismatch impairments, as well as laser phase noise and analog-to-digital conversion quantization impairments. The simulations suggest that major improvements can be expected in the achievable rates of optical networks with high order QAM.
机译:在这封信中,处理了具有正交幅度调制(QAM)输入星座图的光纤通信通道。使用概率整形,我们显示出高阶QAM星座图可以实现并略微超过信道容量的下限,这是由[1]中的环形星座图设置的。然后,我们基于通道输入和输出之间的相互信息的优化,为Turbo编码比特交错编码调制提出了一种映射函数。使用此映射,在模拟的单通道长距离光纤链路上,除了用于同步的导频开销之外,并考虑了频率和相位失配损伤,频谱效率高达6.5 bit / s / Hz /极化。以及激光相位噪声和模数转换量化损伤。仿真表明,可以预期在具有高阶QAM的光网络中可达到的速率方面将取得重大改进。

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