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Measurement of rotational speed and eccentric distance of non-cooperative object using vortex beam

机译:使用涡旋光束测量非协作对象的旋转速度和偏心距离

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The vortex beam with helical phase has great potential in detecting rotating targets. Offset, inclination and even the optical axis not in the same plane with the rotational axis often exist between the beam and the rotational axis when the non-cooperative rotating target is measured by vortex beam. To effectively measure rotational speed and eccentric distance (the distance of facula center and the center of rotation on the object being detected) of non-cooperative object, according to the scattering point model and rotational Doppler effect principle, this paper proposes a geometric projection method to study the detection problem about the incidence of the beam at arbitrary position relative to the object's rotational axis, and analyzes the change of rotational Doppler frequency shift in the state of existing both offset and inclination, and obtains the rule of the extremum of the rotational Doppler frequency shift changing with the relative space position parameters. On this basis, the rotational speed and the eccentric distance are obtained when both eccentricity and inclination exist and the optical axis of vortex has no deflection. And a method for detecting the rotational speed and the eccentric distance of non-cooperative target is proposed. The conclusions obtained in this paper have some guiding significance for further application of rotational speed detection technology based on vortex beam.
机译:具有螺旋相的涡流光束在检测旋转目标方面具有很大的潜力。当通过涡旋光束测量非协同旋转目标时,偏移,倾斜度和甚至在具有旋转轴的相同平面中的光轴通常存在于梁和旋转轴之间。为了有效地测量旋转速度和偏心距离(Facula中心的距离和被检测到的物体上的旋转中心),根据散射点模型和旋转多普勒效应原理,本文提出了一种几何投影方法为了研究关于相对于物体的旋转轴的任意位置处的梁的入射率的检测问题,并分析现有偏移和倾斜状态的旋转多普勒频移的变化,并获得旋转极值的规则多普勒频率换档随着相对空间位置参数而变化。在此基础上,当存在偏心和倾斜度并且涡旋的光轴没有偏转时,获得转速和偏心距离。提出了一种用于检测旋转速度和非协作目标的偏心距离的方法。本文获得的结论具有一些基于涡旋光束的转速检测技术的引导意义。

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