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The application of fountain code in differential frequency hopping systems

机译:源代码在差分跳频系统中的应用

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Based on the anti-jamming performance of differential frequency hopping (DFH) systems in Additive White Gaussian Noise (AWGN) channel, Fountain code is introduced to the DFH systems as the outer error correcting code in this paper to investigate the improvements against partial-band jamming over AWGN channel. The performance of Fountain coded DFH is theoretically analyzed and numerically simulated. The total frequencies of hopping in the simulation is 16, and results show that, on one hand, when exact jamming state information (JSI) is available, and the number of jamming frequency is n=16, the bit error rate (BER) of 10 is achieved with the signal to interference ratio (SIR) approximately 7.5 dB over AWGN channel, and the performance improves about 1-1.5dB compared with the no-coded system. When the number of jamming frequency is n=2, the performance increases 15-17dB. The anti-jamming performance of Fountain coded DFH systems is obviously superior to no-coded DFH systems.
机译:基于差分跳频(DFH)系统在加性高斯白噪声(AWGN)信道中的抗干扰性能,本文将源代码引入DFH系统中作为外部纠错码,以研究对部分频带的改进在AWGN频道上发生干扰。理论上对Fountain编码的D​​FH的性能进行了分析和数值模拟。仿真中的总跳频频率为16,结果表明,一方面,当确切的干扰状态信息(JSI)可用,且干扰频率的数量为n = 16时,误码率(BER)为通过在AWGN信道上的信噪比(SIR)约为7.5 dB,可以实现图10的性能,与无编码系统相比,性能提高了约1-1.5dB。当干扰频率的数量为n = 2时,性能提高15-17dB。 Fountain编码DFH系统的抗干扰性能明显优于无编码DFH系统。

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