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Mode coupling effects in mode-division-multiplexed systems

机译:模式分割多路复用系统中的模式耦合效应

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Mode coupling is a key to overcoming major challenges in mode-division-multiplexed (MDM) long-haul systems using coherent detection. Strong mode coupling reduces the modal group delay spread, minimizing the complexity of digital multi-input multi-output (MIMO) signal processing. Likewise, strong mode coupling mitigates the mode-dependent gain of optical amplifiers, maximizing average channel capacity. When combined with modal dispersion, strong mode coupling creates frequency diversity, dramatically reducing outage probability. Remarkably, the statistical distributions of strongly coupled modal group delays or gains depend only on the number of modes and the variances of accumulated delay or gain, and can be derived from the eigenvalue distributions of certain random matrices. Insight into mode coupling suggests alternative approaches for MDM based on optical MIMO signal processing, which may offer reduced power consumption in short-reach direct-detection systems.
机译:模式耦合是使用相干检测克服模式分割多路复用(MDM)长途系统的主要挑战的关键。 强模式耦合可降低模态群延迟扩展,最大限度地减少数字多输入多输出(MIMO)信号处理的复杂性。 同样,强模式耦合减轻了光学放大器的模式依赖性增益,最大化了平均信道容量。 当与模态色散结合时,强模式耦合会产生频率分集,显着降低中断概率。 值得注意的是,强耦合的模态组延迟或增益的统计分布仅取决于模式的数量和累积延迟或增益的变化,并且可以源自某些随机矩阵的特征值分布。 洞察模式耦合表明了基于光学MIMO信号处理的MDM的替代方法,其可以在短途直接检测系统中提供降低的功耗。

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