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Effect of target surface orientation on the range precision of laser detection and ranging systems

机译:目标表面取向对激光检测和测距系统测距精度的影响

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摘要

Airborne laser detection and ranging (LADAR) systems are used for applications such as three-dimensional imaging, topographic mapping, and target recognition. Typical systems transmit laser beams through apertures that are a few inches wide and use pulses that are roughly a nanosecond in duration. If the pulse reflects off a target that is tilted with respect to the LADAR's line-of-sight, then the reflection process will elongate the received signal as compared to the transmitted pulse. If the range is more than a few kilometers and the target is tilted more than about forty-five degrees, the increase in the width of the received pulse produces a significant drop in range precision as compared to when the target is perpendicular to the line-of-sight.
机译:机载激光检测和测距(LADAR)系统用于三维成像,地形图和目标识别等应用。典型的系统通过几英寸宽的孔径传输激光束,并使用持续时间大约为十亿分之一秒的脉冲。如果脉冲从相对于LADAR的视线倾斜的目标反射,则与发射的脉冲相比,反射过程将延长接收的信号。如果距离超过几公里,并且目标倾斜超过四十五度,则与目标垂直于直线时相比,接收脉冲宽度的增加会大大降低距离精度视线。

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