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首页> 外文期刊>IEEE Transactions on Communications >Error-correcting codes and nonlinear diversity combining against worst case partial-band noise jamming of frequency-hopping MFSK systems
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Error-correcting codes and nonlinear diversity combining against worst case partial-band noise jamming of frequency-hopping MFSK systems

机译:纠错码和非线性分集相结合,针对跳频MFSK系统的最坏情况部分频带噪声干扰

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摘要

Error probability analyses are performed for a coded M-ary frequency-shift keying system (MFSK) using L hops per M-ary word frequency-hopping spread-spectrum waveforms transmitted over a partial-band Gaussian noise jamming channel. The bit error probabilities are obtained for a square-law adaptive gain control receiver with forward-error-control coding under conditions of worst-case partial-band noise jamming. Both thermal noise and jamming noise are included in the analyses. Performance curves are obtained for both block codes and convolutional codes with both binary and M-ary channel modulations. The results show that thermal noise cannot be neglected in the analysis if correct determinations of the optimum order of diversity and the worst-case jamming fraction are to be obtained. It is shown that the combination of nonlinear combining, M-ary modulation, and forward-error-control coding is effective against worst-case partial-band noise jamming.
机译:使用在部分频带高斯噪声干扰信道上传输的每M元字跳频扩频波形L跳,对经过编码的M元频移键控系统(MFSK)进行错误概率分析。对于在最坏情况下的部分带噪声干扰的情况下,使用前向误差控制编码的平方律自适应增益控制接收器,可获得误码率。分析中同时包含了热噪声和干扰噪声。对于具有二进制和M进制信道调制的块码和卷积码,都可以获得性能曲线。结果表明,如果要正确确定最佳分集阶数和最坏情况下的干扰率,则在分析中不能忽略热噪声。结果表明,非线性组合,M进制调制和前向误差控制编码的组合可有效防止最坏情况下的部分频带噪声干扰。

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