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Linear Time Encoding of Low-Density Parity Check Codes and its Performance in Weak Atmospheric Turbulent Channels

机译:低密度奇偶校验码的线性时间编码及其在弱大气湍流信道中的性能

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A major drawback of low-density parity -check (LDPC) Codes is their apparently high encoding complexity and consequent encoding delay. A linear time encoding method proposed by Richardson and Urbanke can effectively reduce the encoding complexity to only linear encoding complexity. In this paper, LDPC codes based on the linear time encoding method is adopted for improving the bit-error rate (BER) performance of an on-off keying (OOK) modulated optical signal through a weak atmosphere turbulence channel. The optical atmosphere channel is modeled as a stationary ergodic channel with lognormal intensity fading. We simulate and analyze the BER performance of the channel using the linear time encoding method. Simulation results show that the presented encoding method can be greatly reduce the BER Moreover, as the code length increases or code rate decreases, the coding gain of LDPC codes over the uncoded system becomes large. Therefore, the presented encoding method with both large code length and low code rate obtain high encode gain for the optical atmosphere turbulence channel.
机译:低密度奇偶校验(LDPC)码的主要缺点在于它们的编码复杂性明显较高,并且随之而来的编码延迟也很高。 Richardson和Urbanke提出的线性时间编码方法可以有效地将编码复杂度降低到仅线性编码复杂度。本文采用基于线性时间编码方法的LDPC码来改善通过弱大气湍流通道的开关键控(OOK)调制光信号的误码率(BER)性能。光学大气通道建模为具有对数正态强度衰减的固定遍历通道。我们使用线性时间编码方法模拟和分析通道的BER性能。仿真结果表明,所提出的编码方法可以大大降低误码率。此外,随着编码长度的增加或编码速率的降低,LDPC码在未编码系统上的编码增益变大。因此,所提出的同时具有大码长和低码率的编码方法为光学大气湍流通道获得了高编码增益。

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