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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Multiple differential detection of parallel concatenated convolutional (turbo) codes in correlated fast Rayleigh fading
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Multiple differential detection of parallel concatenated convolutional (turbo) codes in correlated fast Rayleigh fading

机译:相关快速瑞利衰落中并行级联卷积(turbo)码的多重差分检测

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摘要

A new technique for iterative decoding of parallel concatenated convolutional (turbo) codes (PCCCs) for the correlated fast Rayleigh fading channel is proposed and evaluated. This technique is based upon the use of a multiple differential detector (MDD) receiver structure which exploits the statistical characteristics of the fading process to overcome the effects of the rapid phase and amplitude variations. Since traditional MDD receivers cannot be used with PCCCs because they do not produce soft output and are not compatible with channel interleaving, a novel MDD receiver structure is derived which overcomes these shortfalls. In addition, with careful use of extrinsic information related to the a posteriori probability distribution function of the transmitted symbols, the receiver is designed in such a fashion as to allow channel estimation to improve with each iteration. Evaluation of the proposed receiver by means of computer simulation has shown dramatic performance improvements in fast Rayleigh fading channels as compared to long constraint-length conventional convolutional codes using both single and traditional MDD receiver structures.
机译:提出并评估了一种用于相关快速瑞利衰落信道的并行级联卷积(turbo)码(PCCC)迭代解码的新技术。该技术基于多差分检测器(MDD)接收器结构的使用,该结构利用衰落过程的统计特性来克服快速相位和幅度变化的影响。由于传统的MDD接收机不能与PCCC一起使用,因为它们不产生软输出并且与信道交织不兼容,因此可以推导出克服这些不足的新颖MDD接收机结构。另外,通过谨慎使用与所发送符号的后验概率分布函数有关的外部信息,以这样的方式设计接收机,使得信道估计随着每次迭代而改善。与使用单个和传统MDD接收器结构的长约束长度常规卷积码相比,通过计算机仿真对建议的接收器进行评估已显示出在快速瑞利衰落信道中的显着性能改进。

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