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Performance comparison of probabilistic amplitude shaping and multidimensional modulation

机译:概率幅度整形和多维调制的性能比较

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We numerically evaluate Achievable Information Rate (AIR) and Bit Error Rate (BER) performances of Probabilistic Amplitude Shaping (PAS), eight-dimensional modulation with Bit-Interleaved Coded Modulation Iterative Detection (BICM-ID), and conventional two-dimensional 16QAM (Quadrature Amplitude Modulation) for future high-speed optical communication systems. We confirm that end-to-end BER performances of three modulation formats are almost identical at a same transmission rate when the error correction is used once, and the iterative detection makes the performance of eight-dimensional modulation format better. Further, we verify the BER error-free conditions can be estimated by Normalized General Mutual Information (NGMI) for each modulation format.
机译:我们在数值评估可实现的信息速率(空中)和误码率(BER)性能的概率幅度整形(PAS),八维调制与比特交错的编码调制迭代检测(BICM-ID)和传统的二维16QAM(对未来高速光通信系统的正交幅度调制。我们确认三个调制格式的端到端BER性能在一次纠错一次时,三维传输速率几乎相同,并且迭代检测更好地实现八维调制格式的性能。此外,我们验证了BER错误条件可以通过针对每种调制格式归一化的通用互信息(NGMI)估算。

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