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Detection and false-alarm probabilities for laser radars that use Geiger-mode detectors

机译:使用盖革模式探测器的激光雷达的探测和虚警概率

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For a direct-detection laser radar that uses a Geiger-mode detector, theory shows that the single-pulse detection probability is reduced by a factor exp(-K), where K is the mean number of primary electrons created by noise in the interval t between detector turn-on and arrival of laser photons reflected from the target. The corresponding false-alarm probability is at least 1 - exp(-K). For fixed-rate noise, one can improve the detection and false-alarm probabilities by reducing t. Moreover, when background-light noise is significant and dominates dark-current noise and when the laser signal is of the order of ten photoelectrons or more, the probabilities can be improved by reducing the amount of light falling on the detector, even if the laser signal is reduced by the same factor as the background light is. Additional analytical calculations show that identifying coincidences in data from as few as three pulses can reduce the false-alarm probability by orders of magnitude and, for some conditions, can also improve the detection probability.
机译:对于使用盖革模式探测器的直接探测激光雷达,理论表明,单脉冲探测概率降低了系数exp(-K),其中K是区间内噪声产生的一次电子的平均数检测器开启与从目标反射的激光光子到达之间的t。相应的错误警报概率至少为1-exp(-K)。对于固定速率的噪声,可以通过减小t来提高检测和虚警概率。此外,当背景光噪声很大且占主导地位的暗电流噪声时,并且当激光信号为十个光电子或更高的数量级时,即使减少激光,也可以通过减少落在检测器上的光量来提高概率。信号的降低幅度与背景光相同。额外的分析计算表明,从少至三个脉冲中识别数据的一致性,就可以将错误警报概率降低几个数量级,在某些情况下,还可以提高检测概率。

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    《Applied optics》 |2003年第27期|共11页
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