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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Forward error correction based on block turbo code with 3-bit soft decision for 10-Gb/s optical communication systems
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Forward error correction based on block turbo code with 3-bit soft decision for 10-Gb/s optical communication systems

机译:用于10 Gb / s光通信系统的基于带有3位软判决的块Turbo码的前向纠错

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The first experimental demonstration of a forward error correction (FEC) for 10-Gb/s optical communication systems based on a block turbo code (BTC) is reported. Key algorithms, e.g., extrinsic information, log-likelihood ratio, and soft decision reliability, are optimized to improve the correction capability. The optimum thresholds for a 3-bit soft decider are investigated analytically. A theoretical prediction is verified by experiment using a novel 3-bit soft decision large scale integrated circuit (LSI) and a BTC encoder/decoder evaluation circuit incorporating a 10-Gb/s return-to-zero on-off keying optical transceiver. A net coding gain of 10.1 dB was achieved with only 24.6% redundancy for an input bit error rate of 1.98×10-2. This is only 0.9 dB away from the Shannon limit for a code rate of 0.8 for a binary symmetric channel. Superior tolerance to error bursts given by the adoption of 64-depth interleaving is demonstrated. The ability of the proposed FEC system to achieve a receiver sensitivity of seven photons per information bit when combined with return-to-zero differential phase-shift keying modulation is demonstrated.
机译:报告了基于块Turbo码(BTC)的10 Gb / s光通信系统的前向纠错(FEC)的第一个实验演示。优化关键算法,例如外部信息,对数似然比和软判决可靠性,以提高校正能力。对3位软判决器的最佳阈值进行了分析研究。通过使用新型3位软判决大规模集成电路(LSI)和包含10 Gb / s归零开关键控光收发器的BTC编码器/解码器评估电路,通过实验验证了理论预测。对于1.98×10-2的输入误码率,仅具有24.6%的冗余就可实现10.1 dB的净编码增益。对于二进制对称信道,对于0.8的码率,这仅与Shannon极限相距0.9 dB。通过采用64深度交织,证明了对错误突发的出色容忍度。证明了当与归零差分相移键控调制相结合时,所提出的FEC系统能够实现每个信息位7个光子的接收器灵敏度的能力。

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