Analysis of SISO front-end decoders in IM/DD optical channels with application to turbo code decoding

M. Hueda, D. Crivelli, H. Carrer
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引用次数: 2

Abstract

We analyze the log-likelihood ratio (LLR) of the received signal yielded by a soft input/soft output (SISO) front-end decoder, in intensity modulation direct detection (IM/DD) optical channels operating in the presence of amplified spontaneous emission (ASE) noise. We focus on long haul or metro links spanning several hundred kilometers of single mode fibers with optical amplifiers. Unlike in AWGN channels where the LLR is a scaled version of the received sample, our study shows that in IM/DD optical channels with dominant ASE noise the LLR is approximately proportional to the square root of the received signal. Moreover, although Gaussian modeling of the received samples in optical channels has been shown to be inaccurate (e.g., (G. Bosco, et al., 2003), (Y. Cai, et al., 2003)), in this work we show that the LLR yielded by a SISO front-end decoder can be accurately modeled as a Gaussian random variable. Building on this result, we develop an adaptive decoding scheme for block turbo codes (BTC) in IM/DD optical channels. The predictions of our analysis are verified by computer simulations of the bit error rate (BER) for several BTC. Our results also show that the new scheme performs better than previous proposals in transmissions over optical fiber channels
IM/DD光信道SISO前端解码器分析及其在turbo码译码中的应用
我们分析了在存在放大自发发射(ASE)噪声的强度调制直接检测(IM/DD)光通道中,由软输入/软输出(SISO)前端解码器产生的接收信号的对数似然比(LLR)。我们的重点是长距离或城域链路,跨越数百公里的单模光纤与光放大器。与AWGN信道中LLR是接收样本的缩放版本不同,我们的研究表明,在占主导地位的ASE噪声的IM/DD光信道中,LLR大约与接收信号的平方根成正比。此外,虽然光学通道中接收样本的高斯建模已被证明是不准确的(例如,(G. Bosco等人,2003),(Y. Cai等人,2003)),但在这项工作中,我们表明SISO前端解码器产生的LLR可以准确地建模为高斯随机变量。在此基础上,我们开发了IM/DD光信道中块涡轮码(BTC)的自适应解码方案。通过对几个比特币的误码率(BER)的计算机模拟,验证了我们分析的预测。结果还表明,新方案在光纤信道上的传输性能优于以前的方案
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