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Performance of FFH/BFSK systems with convolutional coding and soft decision Viterbi decoding over Rician fading channels with partial-band noise interference electronic resource

机译:具有卷积编码和软判决维特比解码的FFH / BFSK系统在具有部分频带噪声干扰的Rician衰落信道上的性能电子资源

摘要

An error probability analysis of a communications link employing convolutional coding with soft decision viterbi decoding implemented on a fast frequency hopped, binary frequency shift keying (FFH(BFSK) spread spectrum system is performed. The signal is transmitted through a Rician fading channel with partial band noise interference. The receiver structures examined are the conventional receiver with no diversity, the conventional receiver with diversity and the assumption of perfect side information, and the self normalized combining receiver with diversity. The self normalized receiver minimizes the effects of hostile partial band interference, while diversity alleviates the effects of fading. It is found that with the implementation of soft decision viterbi decoding the performance of the self normalized receiver is improved dramatically for moderate coded bit energy to partialband noise power spectral density ratio (EbNI). Coding drives the jammer to a full band jamming strategy for worst case performance. Nearly worst case jamming occurs when barrage jamming is employed and there is no diversity even in cases where there is very strong direct signal. Performance improves as the constraint length of the convolutional code is increased. For the most powerful convolutional codes, performance is seen to degrade slightly with increasing diversity except in instances of a very weak direct signal. Also, soft decision decoding is found to be superior to hard decision decoding by approximately 4 dB at moderate Eb/NI.
机译:对在快速跳频,二进制频移键控(FFH(BFSK))扩频系统上实现的,采用卷积编码和软判决维特比解码的通信链路的错误概率分析,信号通过具有部分频带的里斯衰落信道传输噪声干扰:所研究的接收机结构是无分集的常规接收机,具有分集和完美边信息假设的常规接收机以及具有分集的自归一化组合接收机。自归一化接收机可最大程度地减少对敌对部分频带干扰的影响,发现通过软判决维特比解码的实施,对于中等编码比特能量与部分频带噪声功率谱密度比(EbNI),自标准化接收机的性能得到了显着改善,编码驱动了干扰。全频干扰策略r最坏情况下的性能。当采用弹幕干扰时,几乎发生最坏情况的干扰,即使在直接信号非常强的情况下也没有分集。随着卷积码约束长度的增加,性能也会提高。对于最强大的卷积码,除直接信号非常弱的情况外,随着分集的增加,性能会略有下降。同样,在中等Eb / NI时,发现软判决解码比硬判决解码优越约4 dB。

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  • 作者

    Theodoss Michael D.;

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  • 年度 1995
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  • 原文格式 PDF
  • 正文语种 en_US
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