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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Likelihood-ratio detection of frequency-hopped signals
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Likelihood-ratio detection of frequency-hopped signals

机译:跳频信号的似然比检测

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The optimum system for intercepting frequency-hopped signals uses a channelized receiver and a likelihood-ratio test (LRT). Previous results on the performance of the optimum system have been based on Gaussian assumptions, which are generally valid for transmissions having large time-bandwidth areas. Results, obtained by Monte Carlo simulation, for relatively small time-bandwidth transmissions are given here. The signal model is a simple one known as "pure frequency hopping." Comparisons with the LRT show that energy detection loss increases when the time-bandwidth product of the transmission is increased by increasing the number of frequencies, even when the number of pulses is also increased. The loss decreases when only the number of pulses is increased. Over the parameter range observed, binary detection loss tends to increase with the number of pulses and decrease with the number of frequencies. Results are included for a moving-window version of the LRT. A parameter of the LRT is the signal-to-noise ratio (SNR). The effect of using a design value not equal to the true SNR is shown.
机译:侦听跳频信号的最佳系统使用信道化接收器和似然比测试(LRT)。最佳系统性能的先前结果是基于高斯假设的,这些假设通常对具有较大时间带宽区域的传输有效。此处给出了通过蒙特卡罗模拟获得的,相对较小的时间带宽传输的结果。信号模型是一种简单的模型,称为“纯跳频”。与LRT的比较表明,通过增加频率数来增加传输的时间带宽乘积时,即使脉冲数也增加,能量检测损耗也会增加。当仅增加脉冲数时,损耗减小。在观察到的参数范围内,二进制检测损耗趋于随脉冲数增加而随频率数减少。包含了LRT的移动窗口版本的结果。 LRT的参数是信噪比(SNR)。显示了使用不等于真实SNR的设计值的效果。

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