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On the bit-error rate of product accumulate codes in optical fiber communications

机译:光纤通信中产品累积码的误码率

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摘要

Product accumulate (PA) codes were proposed as a class of high-rate low-complexity, capacity-approaching codes on additive white Gaussian noise (AWGN) channels. In this paper, we investigate the performance of the PA codes on intensity modulated optical fiber channels where the amplified spontaneous emission (ASE) noise dominates all other noise sources. We consider binary on-off keying (OOK) modulation and iterative soft-decision message-passing decoding for the PA codes. Three channel models for the ASE noise dominated channel are investigated: asymmetric chi-square, asymmetric Gaussian, and symmetric Gaussian channels (i.e., AWGN). At low signal-to-noise ratios (SNRs), due to the lack of tight bounds, code performance is evaluated using simulations of typical PA coding schemes. For high SNRs that are beyond simulation capabilities, we derive the pairwise error probability of the three channels and explore an average upper bound on the bit-error rate over the ensemble of PA codes. We show that AWGN channels, although fundamentally different from chi-square channels, can serve as a reference to approximate the performance of high-rate PA codes.
机译:在累加白高斯噪声(AWGN)信道上,提出了产品累积(PA)码作为一类高速率,低复杂度,接近容量的码。在本文中,我们研究了强度增强型光纤通道上PA代码的性能,其中放大的自发发射(ASE)噪声主导所有其他噪声源。我们考虑对PA码进行二进制开关键控(OOK)调制和迭代软判决消息传递解码。研究了ASE噪声主导型信道的三个信道模型:非对称卡方,非对称高斯和对称高斯信道(即AWGN)。在低信噪比(SNR)下,由于缺乏严格的界限,使用典型PA编码方案的仿真来评估代码性能。对于超出仿真能力的高SNR,我们推导了三个通道的成对错误概率,并探索了PA码整体上误码率的平均上限。我们显示,尽管AWGN频道与卡方频道从根本上不同,但可以作为近似参考高速率PA代码性能的参考。

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