EXIT(EXtrinsic Information Transfer)图分析方法可以看作密度进化技术的一种简化,具有实现简单的优点,并且在不同的信道、调制方案以及检测器中都可以使用。在详细阐述了EXIT图分析方法的基础上,给出了基于EXIT图的正则LDPC码的门限...EXIT(EXtrinsic Information Transfer)图分析方法可以看作密度进化技术的一种简化,具有实现简单的优点,并且在不同的信道、调制方案以及检测器中都可以使用。在详细阐述了EXIT图分析方法的基础上,给出了基于EXIT图的正则LDPC码的门限判决算法,进一步通过计算机仿真分别给出了变量节点译码器和校验节点译码器的EXIT曲线,以及不同的信道信噪比下(3,6)正则LDPC码EXIT图的变化规律,直观地对迭代译码过程中的互信息变化进行了描述分析。展开更多
PCGC(Parallel Concatenated Gallager Code,并行级联Gallager码)是一种将LDPC(Low Density Parity Check,低密度奇偶校验)码与并行级联编码相结合的信道编码。传统的PCGC译码器参数通过仿真获得,有可能导致不必要的译码迭代。通过分析P...PCGC(Parallel Concatenated Gallager Code,并行级联Gallager码)是一种将LDPC(Low Density Parity Check,低密度奇偶校验)码与并行级联编码相结合的信道编码。传统的PCGC译码器参数通过仿真获得,有可能导致不必要的译码迭代。通过分析PCGC码的边信息转移图,以获得PCGC码子译码器的最优参数。仿真结果表明,通过EXIT(Extrinsic Information Transfer,边信息转移)图分析获得的译码器最优参数设置可以在不影响误码率性能的基础上,有效地节省译码器运算量。展开更多
Space time trellis coding (STTC) techniques have been proposed to achieve both diversity and coding gains in multiple input multiple output (MIMO) fading channels. But with more transmit antennas STTCs suffer from...Space time trellis coding (STTC) techniques have been proposed to achieve both diversity and coding gains in multiple input multiple output (MIMO) fading channels. But with more transmit antennas STTCs suffer from the design dificulty and complexity increasing. This paper proposes a scheme, named parallel concatenated space time trellis codes (PC-STTC), to achieve the tradeoff between the performances and complexity of STTCs for a large number of transmit antennas. Simulation results and complexity comparison are provided to demonstrate the performance and superiority of the proposed scheme over conventional schemes in fast fading channels in low signal-to-noise ratio (SNR) regions. And an EXIT (extrinsic information transform) chart is given to analyze the iterative convergence of the proposed scheme. It shows that PC-STTC has better iterative convergence in low SNR regions.展开更多
两边类型低密度奇偶校验码(two-edge type low density parity check,TET-LDPC码)是一种高效的信道纠错码,其性能受到删余变量节点度(punctured variable node degree,PVN度)的影响.为了分析PVN度对TET-LDPC码纠错性能的影响,基于外信...两边类型低密度奇偶校验码(two-edge type low density parity check,TET-LDPC码)是一种高效的信道纠错码,其性能受到删余变量节点度(punctured variable node degree,PVN度)的影响.为了分析PVN度对TET-LDPC码纠错性能的影响,基于外信息转移图(extrinsic information transfer,EXIT图)估算了TET-LDPC码在不同PVN度情况下的门限值,利用门限值的好坏来分析纠错性能的优劣,进而通过选取门限值好的PVN度优化TET-LDPC码.仿真结果显示,经过EXIT图优化的TET-LDPC码具有更好的纠错性能.利用EXIT图优化分析TET-LDPC码的方法,比现有的仿真试值法更加简捷、直观.展开更多
文摘EXIT(EXtrinsic Information Transfer)图分析方法可以看作密度进化技术的一种简化,具有实现简单的优点,并且在不同的信道、调制方案以及检测器中都可以使用。在详细阐述了EXIT图分析方法的基础上,给出了基于EXIT图的正则LDPC码的门限判决算法,进一步通过计算机仿真分别给出了变量节点译码器和校验节点译码器的EXIT曲线,以及不同的信道信噪比下(3,6)正则LDPC码EXIT图的变化规律,直观地对迭代译码过程中的互信息变化进行了描述分析。
文摘PCGC(Parallel Concatenated Gallager Code,并行级联Gallager码)是一种将LDPC(Low Density Parity Check,低密度奇偶校验)码与并行级联编码相结合的信道编码。传统的PCGC译码器参数通过仿真获得,有可能导致不必要的译码迭代。通过分析PCGC码的边信息转移图,以获得PCGC码子译码器的最优参数。仿真结果表明,通过EXIT(Extrinsic Information Transfer,边信息转移)图分析获得的译码器最优参数设置可以在不影响误码率性能的基础上,有效地节省译码器运算量。
基金supported by Shanghai Municipal Government and Nokia
文摘Space time trellis coding (STTC) techniques have been proposed to achieve both diversity and coding gains in multiple input multiple output (MIMO) fading channels. But with more transmit antennas STTCs suffer from the design dificulty and complexity increasing. This paper proposes a scheme, named parallel concatenated space time trellis codes (PC-STTC), to achieve the tradeoff between the performances and complexity of STTCs for a large number of transmit antennas. Simulation results and complexity comparison are provided to demonstrate the performance and superiority of the proposed scheme over conventional schemes in fast fading channels in low signal-to-noise ratio (SNR) regions. And an EXIT (extrinsic information transform) chart is given to analyze the iterative convergence of the proposed scheme. It shows that PC-STTC has better iterative convergence in low SNR regions.
文摘两边类型低密度奇偶校验码(two-edge type low density parity check,TET-LDPC码)是一种高效的信道纠错码,其性能受到删余变量节点度(punctured variable node degree,PVN度)的影响.为了分析PVN度对TET-LDPC码纠错性能的影响,基于外信息转移图(extrinsic information transfer,EXIT图)估算了TET-LDPC码在不同PVN度情况下的门限值,利用门限值的好坏来分析纠错性能的优劣,进而通过选取门限值好的PVN度优化TET-LDPC码.仿真结果显示,经过EXIT图优化的TET-LDPC码具有更好的纠错性能.利用EXIT图优化分析TET-LDPC码的方法,比现有的仿真试值法更加简捷、直观.