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Flash light detection and ranging range accuracy limits for returns from single opaque surfaces via Cramer-Rao bounds

机译:通过Cramer-Rao边界从单个不透明表面返回的闪光灯检测和测距范围精度限制

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摘要

A Cramer-Rao lower bound on the range accuracy obtainable by a Flash light detection and ranging (LADAR) system receiving a return from a single surface in the instantaneous field of view of each detector is developed and verified with experimental data. The bound is compared to the performance of a new algorithm and that of a matched filter receiver by using both simulated and measured LADAR data. The simulated data are used to show that the estimator is nearly unbiased and efficient for systems that match the negative paraboloid model used in its derivation. It is found that the achievable range accuracy for the LADAR system and for the target geometry used to collect the measured data is of the order of 2.5 in. while the bound predicts a range accuracy limit of approximately 0.6 in.
机译:开发并通过实验数据验证了通过闪光灯检测和测距(LADAR)系统在每个检测器的瞬时视场中从单个表面接收返回光所获得的Cramer-Rao下限精度。通过使用模拟和测量的LADAR数据,将边界与新算法和匹配滤波器接收器的性能进行比较。仿真数据用于表明,对于与推导中使用的负抛物面模型匹配的系统,估计器几乎是无偏的且有效的。已经发现,对于LADAR系统和用于收集测量数据的目标几何体,可达到的范围精度约为2.5 in。,而界限预测的范围精度极限约为0.6 in.。

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