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Performance of the FFH/BFSK self-normalized receiver with convolutional coding and soft decision decoding over Rician fading channels with partial-band noise interference

机译:具有卷积编码和软判决解码的FFH / BFSK自归一化接收机在具有部分频带噪声干扰的Rician衰落信道上的性能

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In this paper 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 both wideband thermal noise and partial-band noise interference. The receiver structure examined is 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. We find that with the implementation of soft decision Viterbi decoding, the performance of the self-normalized receiver improves dramatically at moderate signal power-to-interference power ratios. 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 except in cases where there is very strong direct signal. When the energy per bit and the total spread bandwidth is held constant, performance degrades slightly with increasing diversity except in instances of a very weak direct signal. When the spread bandwidth expands with increasing diversity, the jammer is forced to spread its power over a wider bandwidth and diversity offers some performance advantage.
机译:本文对在快速跳频,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进行了分析。信号通过具有宽带热噪声和部分频带噪声干扰的Rician衰落信道传输。所研究的接收机结构是具有分集的自归一化组合接收机。自归一化接收器将对敌方部分频带干扰的影响降至最低,而分集则减轻了衰落的影响。我们发现,通过实施软判决维特比解码,在信号功率与干扰功率之比适中的情况下,自归一化接收器的性能得到了显着改善。编码将干扰器驱动到全频带干扰策略,以实现最差的性能。当采用弹幕干扰时,几乎最坏的情况就是发生干扰,除了有很强的直接信号的情况以外,没有分集。当每位能量和总扩展带宽保持恒定时,除直接信号非常弱的情况外,随着分集的增加,性能会稍有下降。当扩展带宽随着分集的增加而扩展时,干扰器被迫将其功率扩展到更宽的带宽上,分集提供了一些性能优势。

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