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Design of LDGM-based Raptor Codes for broadband Internet of Things using EXIT chart

机译:基于LDGM的Raptor代码使用退出图表的宽带互联网

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Efficient channel coding techniques for wireless communications become important solutions to meet the 5G requirements, especially on the aspect of high reliability and low latency communications in the Internet of Things (IoT) era. This paper proposes new degree distributions of Raptor Codes for devices supporting IoT communications with Low Density Generator Matrix (LDGM) codes as the precode, called LDGM-Raptor codes. The proposed LDGM-Raptor codes is applied for broadband IoT (BB-IoT) to support high data rate in IoT networks with high reliability while keeping low computational complexity. The degree distribution in LDGM-Raptor codes is designed by using Extrinsic Information Transfer (EXIT) charts in Binary Erasure Channel (BEC)-based equivalent Additive White Gaussian Noise (AWGN) and multipath fading channels. EXIT charts are also used to estimate Bit-Error Rate (BER) performances of the proposed codes. The results confirm that the performance with new degree distributions of LDGM-Raptor close to the Shannon limit, which is required to make BB-IoT reliable and efficient.
机译:无线通信的有效信道编码技术成为满足5G要求的重要解决方案,尤其是在内容互联网(IOT)时代的高可靠性和低延迟通信方面。本文提出了支持与低密度发生器矩阵(LDGM)代码支持IOT通信的设备的新程度分布,作为预先称为LDGM-Raptor代码。所提出的LDGM-RAPTOR代码用于宽带物联网(BB-IOT),以支持高可靠性的IOT网络中的高数据速率,同时保持低计算复杂性。 LDGM-RAPTOR代码中的程度分布是通过在二进制擦除通道(BEC)中的等效添加剂白色高斯噪声(AWGN)和多径衰落通道的基础擦除通道(BEC)中的外在信息传输(退出)图来设计。退出图表也用于估计所提出的代码的误码率(BER)性能。结果证实,具有新程度分布的LDGM-Raptor的性能接近Shannon限制,这是使BB-IOT可靠和高效的。

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