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Antijam performance of FFH/BFSK with noise-normalization combining in a Nakagami-m fading channel with partial-band interference

机译:在Nakagami-m衰落信道中具有部分频带干扰的结合噪声归一化的FFH / BFSK抗干扰性能

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摘要

The bit error rate (BER) performance of a noncoherent fast frequency-hopped binary orthogonal frequency-shift-keying (FFH/BFSK) spread spectrum noise-normalization combining receiver is evaluated in the presence of partial-band interference (PBI) and additive white Gaussian noise (AWGN) over independent frequency-nonselective slowly Nakagami-m fading channels. It is shown from the analytical results, and verified by simulation, that a higher diversity level greatly improves the worst-case performance of the noise-normalization receivers over Rayleigh or more severe fading channels, while a lower diversity level is preferred for less severe fading channels. In the former case, a full band strategy is optimal for the interferer and a partial-band strategy is more disruptive in the latter case.
机译:在存在部分频带干扰(PBI)和加性白噪声的情况下,评估了非相干快速跳频二进制正交频移键控(FFH / BFSK)扩频噪声归一化组合接收机的误码率(BER)性能独立的非频率非选择性缓慢Nakagami-m衰落信道上的高斯噪声(AWGN)。从分析结果可以看出,并通过仿真验证,较高的分集级别可以极大地改善瑞利或更为严重的衰落信道上的噪声归一化接收器的最坏情况性能,而对于较不严重的衰落,则首选较低的分集级别渠道。在前一种情况下,全频带策略对于干扰源是最佳的,而部分频带策略在后一种情况下更具破坏性。

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