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Bound on range precision for shot-noise limited ladar systems

机译:散粒噪声受限的雷达系统的范围精度

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摘要

The precision of ladar range measurements is limited by noise. The fundamental source of noise in a laser signal is the random time between photon arrivals. This phenomenon, called shot noise, is modeled as a Poisson random process. Other noise sources in the system are also modeled as Poisson processes. Under the Poisson-noise assumption, the Cramer-Rao lower bound (CRLB) on range measurements is derived. This bound on the variance of any unbiased range estimate is greater than the CRLB derived by assuming Gaussian noise of equal variance. Finally, it is shown that, for a ladar capable of dividing a fixed amount of energy into multiple laser pulses, the range precision is maximized when all energy is transmitted in a single pulse.
机译:激光距离测量的精度受到噪声的限制。激光信号中的基本噪声源是光子到达之间的随机时间。这种称为散粒噪声的现象被建模为泊松随机过程。系统中的其他噪声源也被建模为泊松过程。在泊松噪声假设下,得出了距离测量的Cramer-Rao下界(CRLB)。任何无偏范围估计的方差上的此界限都大于通过假定等方差的高斯噪声得出的CRLB。最终,示出了对于能够将固定量的能量分成多个激光脉冲的激光雷达,当所有能量在单个脉冲中传输时,测距精度最大化。

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