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Model for Calculating the Target Characteristics of Synchronous Scanning Circumferential Pulsed Laser Detector

机译:同步扫描周向脉冲激光探测器目标特性的计算模型

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The circumferential laser detector with directional action device can realize highly effective aimed damage, the optimal controlling time and controlling direction cannot achieve high accuracy, if they are usually calculated only according to the azimuth and distance information of a single measurement. On the other hand, laser detector cannot distinguish the authenticity of the target and easily to misinterpret the function. Based on the working principle of synchronous scanning circumferential pulsed laser detector, several detection points and their position coordinates in the process of object target crossing are analyzed. And according to the distance and azimuth information of each detection point, the target velocity model based on multiple detection points is established, which can calculate the target velocity and distinguish the authenticity of the target. Based on the target velocity model, the optimal controlling model based on multiple detection points is established. The optimal controlling time and the optimal controlling position can be solved by the equations, and the optimal damage efficiency can be obtained. The mathematical model is proved through a numerical example. The research can provide a reference for the optimization of the performance of the synchronous scanning circumferential pulsed laser detector.
机译:具有定向作用装置的周向激光探测器,如果通常仅根据单次测量的方位角和距离信息进行计算,则可以实现高效的有针对性的损伤,最优的控制时间和控制方向无法达到较高的精度。另一方面,激光检测器不能区分目标的真实性并且容易误解功能。根据同步扫描周向脉冲激光探测器的工作原理,分析了目标物穿越过程中的几个探测点及其位置坐标。根据每个检测点的距离和方位角信息,建立了基于多个检测点的目标速度模型,可以计算出目标速度并区分出目标的真实性。基于目标速度模型,建立了基于多个检测点的最优控制模型。通过等式可以求解出最优的控制时间和最优的控制位置,从而获得了最优的破损效率。通过数值实例证明了该数学模型。该研究可为同步扫描周向脉冲激光探测器性能的优化提供参考。

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