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Packet-Level Iterative Errors-and-Erasures Decoding for SFH Spread-Spectrum Communications with Reed-Solomon Codes and Differential Encoding

机译:与REED-SOOMON代码和差分编码的SFH扩频通信解码分组级迭代误差和擦除解码

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A packet-level iterative detection technique that employs errors-and-erasures decoding has been described previously for SFH communications using Reed-Solomon coding. The technique enhances the performance of the SFH system in intersymbol-interference channels with only a minimal increase in complexity over one-shot errors-and-erasures decoding. In this paper, the performance of iterative EE decoding is considered for a SFH system with differentially encoded transmissions. It is shown that the use of differential encoding improves the performance of packet-level iterative detection in an AWGN channel with only a modest increase in detection complexity, and it also improves the performance in an intersymbol-interference channel in many instances. The packet size, the target probability of error, and the channel impulse response are considered, and the effect of each on the performance gain and the complexity is examined.
机译:先前使用REED-SOMON编码来描述采用错误和擦除解码的分组级迭代检测技术。该技术提高了SFH系统在符号间干扰通道中的性能,仅通过单次误差和擦除解码的复杂性的最小增加。在本文中,考虑了具有差分编码传输的SFH系统的迭代EE解码的性能。结果表明,差分编码的使用改善了AWGN信道中的分组级迭代检测的性能,仅具有较大的检测复杂性,并且还提高了许多实例中的符号间干扰信道中的性能。考虑分组大小,误差的目标概率和信道脉冲响应,检查每个对性能增益和复杂性的效果。

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