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Performance of fast frequency-hopped MFSK receivers with linear and self-normalization combining in a Rician fading channel with partial-band interference

机译:具有部分频带干扰的Rician衰落信道中结合线性和自归一化的快速跳频MFSK接收机的性能

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摘要

An error probability analysis is performed for both self-normalized and conventional M-ary orthogonal frequency-shift-keying (MFSK) noncoherent receivers using fast frequency-hopped (FFH) spread-spectrum waveforms transmitted over a Rician fading channel with partial-band interference. The self-normalization receiver uses a nonlinear combination procedure to minimize performance degradation due to partial-band interference. The performance of the conventional receiver is significantly degraded by worst-case partial-band interference regardless of the modulation order or number of hops per data symbol used, while the self-normalization receiver can provide a significant immunity to worst-case partial-band interference for many channel conditions when diversity is used, provided the signal-to-thermal-noise ratio is large enough to minimize degradation due to nonlinear combining losses. The improvement afforded by higher modulation orders is dependent on channel conditions.
机译:对于自归一化和常规Mary正交频移键控(MFSK)非相干接收机,使用在部分频带干扰下通过Rician衰落信道传输的快速跳频(FFH)扩频波形,进行了误差概率分析。自归一化接收器使用非线性组合过程来最小化由于部分频带干扰引起的性能下降。不管调制顺序或使用的每个数据符号的跳数如何,常规接收机的性能都会受到最坏情况下的部分频带干扰的严重影响,而自归一化接收机可以提供对最坏情况下的部分频带干扰的显着免疫力在使用分集的情况下,对于许多信道条件,只要信噪比足够大,就可以最大程度地减小由于非线性组合损耗而引起的劣化。更高的调制阶数所提供的改进取决于信道条件。

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