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Structured Low-Density Parity-Check Codes with Bandwidth Efficient Modulation

机译:具有带宽高效调制的结构化低密度奇偶校验码

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In this work, we study the performance of structured Low-Density Parity-Check (LDPC) Codes together with bandwidth efficient modulations. We consider protograph-based LDPC codes that facilitate high-speed hardware implementations and have minimum distances that grow linearly with block sizes. We cover various higher-order modulations such as 8-PSK, 16-APSK, and 16-QAM. During demodulation, a demapper transforms the received in-phase and quadrature samples into reliability information that feeds the binary LDPC decoder. We will compare various low-complexity demappers and provide simulation results for assorted coded-modulation combinations on the additive white Gaussian noise and independent Rayleigh fading channels.
机译:在这项工作中,我们研究了结构化低密度奇偶校验(LDPC)代码以及带宽有效调制的性能。我们考虑基于质子的LDPC代码,便于高速硬件实现,并且具有与块尺寸线性生长的最小距离。我们涵盖了各种高阶调制,如8-PSK,16-APSK和16-QAM。在解调期间,Demapper将接收的同相和正交样本转换为提供二进制LDPC解码器的可靠性信息。我们将比较各种低复杂性拆除员,并为Actoration White Gaussian噪声和独立的Rayleigh衰落通道提供各种编码调制组合的仿真结果。

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