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Performance of FH/BFSK with generalized fading in worst case partial-band Gaussian interference

机译:FH / BFSK在最坏情况下的部分频带高斯干扰下具有广义衰落的性能

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摘要

For frequency-hopped (noncoherent) binary frequency shift keying (FH/BFSK) on a worst-case partial-band Gaussian interference channel, the bit error probability results are well known for the extreme cases where the signal is either nonfading or Rayleigh fading. In this work, the region between these extremes is filled in by considering the general Nakagami-m fading model. The worst-case partial-band Gaussian interference results are given by a one-parameter family which for m to infinity gives the Viterbi-Jacobs nonfading result, and for m=1 gives the Rayleigh fading result. In the latter case, a broadband interference strategy is optimal. Thus, the Nakagami-m results provide a smooth one-parameter bridge between the Viterbi-Jacobs channel and the Rayleigh fading channel. The results show that the worst-case interference fraction rho increases as the fading variance increases, up to Rayleigh fading. Any fading less severe than Rayleigh, however slight the departure from Rayleigh, requires a partial-band strategy for sufficiently large E/sub b//N/sub I/.
机译:对于最坏情况的部分频带高斯干扰信道上的跳频(非相干)二进制频移键控(FH / BFSK),对于信号为非衰落或瑞利衰落的极端情况,误码率的结果是众所周知的。在这项工作中,通过考虑一般的Nakagami-m衰落模型来填充这些极端之间的区域。一个单参数族给出了最坏情况的部分频带高斯干扰结果,对于m到无穷大,给出了Viterbi-Jacobs非衰落结果,对于m = 1,给出了瑞利衰落结果。在后一种情况下,宽带干扰策略是最佳的。因此,Nakagami-m结果在维特比-雅各布斯信道和瑞利衰落信道之间提供了一个平滑的一参数桥接。结果表明,最坏情况的干扰分数rho随着衰落方差的增加而增加,直至瑞利衰落。任何不如瑞利衰落那么严重的衰落,无论与瑞利的偏离有多么微小,都需要针对足够大的E / sub b // N / sub I /的部分频带策略。

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