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Single- and multiple-pulse noncoherent detection statistics associated with partially developed speckle

机译:与部分散斑相关的单脉冲和多脉冲非相干检测统计

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摘要

Single- and multiple-pulse detection statistics are presented for aperture-averaged direct detection optical receivers operating against partially developed speckle fields. A partially developed speckle field arises when the probability density function of the received intensity does not follow negative exponential statistics. The case of interest here is the target surface that exhibits diffuse as well as specular components in the scattered radiation. An approximate expression is derived for the integrated intensity at the aperture, which leads to single- and multiple-pulse discrete probability density functions for the case of a Poisson signal in Poisson noise with an additive coherent component. In the absence of noise, the single-pulse discrete density function is shown to reduce to a generalized negative binomial distribution. The radar concept of integration loss is discussed in the context of direct detection optical systems where it is shown that, given an appropriate set of system parameters, multiple-pulse processing can be more efficient than single-pulse processing over a finite range of the integration parameter n.
机译:给出了针对部分发展的散斑场工作的孔径平均直接检测光接收机的单脉冲和多脉冲检测统计数据。当接收强度的概率密度函数不遵循负指数统计时,会出现部分发展的散斑场。此处感兴趣的情况是目标表面在散射辐射中显示出散射以及镜面反射分量。对于孔径处的积分强度,得出了一个近似表达式,对于泊松噪声中具有附加相干分量的泊松信号,这导致了单脉冲和多脉冲离散概率密度函数。在没有噪声的情况下,单脉冲离散密度函数显示为减小为广义的负二项式分布。在直接检测光学系统的背景下讨论了雷达的积分损失概念,结果表明,在适当的系统参数集下,在有限的积分范围内,多脉冲处理比单脉冲处理更有效参数n。

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