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首页> 外文期刊>IEEE Transactions on Communications >Non-Binary LDPC Code Design for the Poisson PPM Channel
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Non-Binary LDPC Code Design for the Poisson PPM Channel

机译:泊松PPM通道的非二进制LDPC代码设计

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This paper investigates the design of non-binary protograph low-density parity-check codes for the Poisson channel with m-ary pulse position modulation. The field order over which the code is constructed is matched to the pulse position modulation order yielding a coded modulation scheme. The optimization of the low-density parity-check code structure is performed via protograph density evolution on a surrogate m-ary erasure channel. The surrogate design is illustrated to be not only accurate, but also robust for a range of practical values of channel background noise and various modulation orders. As a result the proposed codes show excellent performance over the Poisson channel with pulse position modulation outperforming competing schemes. As a side-product of this paper, finite-length benchmarks on the block error probability are provided, together with a union bound to characterize the code performance in the error floor region.
机译:本文研究了采用m元脉冲位置调制的Poisson通道的非二进制原型低密度奇偶校验码的设计。构造代码的场序与脉冲位置调制阶匹配,产生编码调制方案。低密度奇偶校验码结构的优化是通过代理m擦除通道上的原型密度演化来实现的。所说明的替代设计不仅精确,而且对于信道背景噪声和各种调制阶数的实际值范围也很鲁棒。结果,所提出的代码在泊松信道上显示出优异的性能,其脉冲位置调制优于竞争方案。作为本文的副产品,提供了关于块错误概率的有限长度基准,并提供了一个联合,以描述错误基底区域中的代码性能。

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