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Measurement of projectile's in-bore yaw based on the optical lever principle

机译:基于光学杠杆原理的弹丸内偏角测量

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The initial disturbance of a projectile emerging from the gun muzzle is a major reason for the projectile dispersion. Therefore, measurements of initial disturbances have a great value in improving the understanding. This paper establishes a mathematical model of the measurement system for the projectile's in-bore orientation, by utilizing the theory of ray tracing and kinematics. The layout of the optical apparatuses is attributed to an optimization problem, and the genetic algorithm is implemented to acquire an optimal layout scheme, which is further verified by test. Also, the linear time-invariant characteristics of the measurement system are numerically verified in the context of spatial ray. These investigations will provide a technical support for the experiment, the optical apparatuses' layout and calibration of the measurement system.
机译:从枪口冒出的弹丸的初始扰动是弹丸散布的主要原因。因此,测量初始扰动对提高理解具有很大的价值。利用射线追迹和运动学理论,建立了弹丸孔内定向测量系统的数学模型。光学设备的布局归因于优化问题,并且遗传算法被实现以获取最优布局方案,该最优布局方案通过测试进一步验证。同样,在空间射线的背景下,数字验证了测量系统的线性时不变特性。这些研究将为实验,光学仪器的布局和测量系统的校准提供技术支持。

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