首页> 外国专利> Method and apparatus for deploying forward error correction in optical transmission networks and the deployment of photonic integrated circuit (PIC) chips with the same

Method and apparatus for deploying forward error correction in optical transmission networks and the deployment of photonic integrated circuit (PIC) chips with the same

机译:用于在光传输网络中部署前向纠错的方法和装置以及具有该方法和装置的光子集成电路芯片的部署

摘要

An apparatus and method for uniformly sharing across a plurality of channel signals FEC coding gain which may be achieved through FEC encoding of a higher baud rate electrical data signal or through multiplexed or combined electrical data signals from multiple data sources prior to their subsequent demultiplexing and separate generation into optical channel signals which are multiplexed and launched onto an optical transmission medium. The optical signal generation is achieved through reverse multiplexing of the higher baud rate data signal or of the multiplexed, FEC encoded plural data signals. Effectively, the coding gain power of the FEC encoder is spread over all the signal channels so that each channel can potentially benefit from performance above the average coding gain thereby increasing the coding gain of the worst noise signal channel and correspondingly reducing its BER at the receiver so that, now, the combined multiple channel signals may be propagated further along the optical transmission medium before signal interception is required, such as required channel signal regeneration (3R). By coding gain averaging, the coding gain is taken from the lesser noise affected channels and spread over all the channels so the higher noised ridden channels obtain an effective increase in coding gain which corresponds to a higher reduction in BER at the optical receiver terminal.
机译:一种在多个信道信号上均匀共享FEC编码增益的装置和方法,该增益可以通过对更高波特率电数据信号进行FEC编码,或者在后续解复用和分离之前通过来自多个数据源的多路复用或组合电数据信号来实现产生光信道信号,这些信号被多路复用并发射到光传输介质上。通过较高波特率数据信号或经多路复用,经FEC编码的多个数据信号的反向复用来实现光信号的生成。实际上,FEC编码器的编码增益功率分布在所有信号通道上,因此每个通道都可以从平均编码增益以上的性能中受益,从而提高最差噪声信号通道的编码增益,并相应地降低接收器的BER因此,现在,组合的多通道信号可以在需要信号拦截(例如所需的通道信号再生(3R))之前沿光传输介质进一步传播。通过对编码增益求平均,编码增益取自受噪声影响较小的信道,并在所有信道上扩展,因此,较高噪声的骑行信道可获得有效的编码增益增加,这对应于光接收器终端的BER降低较大。

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