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Comparison of performance measures for intercept detectors

机译:拦截探测器性能测量比较

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The performance of intercept detectors is generally analyzed using the Neyman-Pearson criterion, which evaluates the probability of detection, P/sub d/, as a function of input signal-to-noise ratio (SNR) at a particular probability of false alarm, P/sub fa/. While the Neyman-Pearson criterion closely represents typical system requirements, it is often difficult to evaluate, and obscures important effects in tradeoff analyses. Consequently other performance measures, such as output SNR or the deflection, are often used instead. While the output SNR is useful for evaluating and optimizing a particular detector class, it may be inappropriate when applied to different detector classes. This paper examines the output SNR and probability of detection, for three intercept detectors: the radiometer, the chip rate detector, and the carrier harmonic detector (frequency doubler). The analysis makes the following assumptions: a direct-sequence pseudo-noise spread spectrum signal of interest additive stationary white Gaussian-distributed noise background with fixed known power (i.e., no noise power uncertainty) known power spectral density of the signal of interest input SNR much less than unity observation time much greater than the chip duration. The analysis highlights the danger of blindly evaluating detector performance solely by output SNR. Specific examples are identified in which the radiometer's performance, using the Neyman-Pearson criterion, is inferior to that of the cyclostationary feature detectors operating at equal output SNR for the decision variable.
机译:通常使用Neyman-Pearson标准分析截距检测器的性能,该标准评估了检测的概率,P / SUB D /,作为在误报的特定概率下的输入信噪比(SNR)的函数, p / sub fa /。虽然Neyman-Pearson标准紧密地代表典型的系统要求,但通常难以评估,并在权衡分析中模糊重要影响。因此,通常使用其他性能措施,例如输出SNR或偏转。虽然输出SNR可用于评估和优化特定的检测器类,但在应用于不同的检测器类时可能是不合适的。本文介绍了输出SNR和检测概率,三个截距探测器:辐射计,芯片速率检测器和载波谐波检测器(频率倍增)。该分析使得以下假设:感兴趣加附加静止白色高斯分布的直接序列伪噪声扩频信号,其具有固定的已知功率(即,无噪声功率不确定性)可知的感兴趣信号的已知功率谱密度输入SNR远低于均衡时间大于芯片持续时间。分析突出了盲目评估探测器性能的危险,仅通过输出SNR。鉴定了使用Neyman-Pearson标准的辐射计的性能的具体示例不如在判定变量上以相等输出SNR操作的卷曲特征检测器的性能。

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