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Practical adaptive filter controls for precision beam pointing and tracking with jitter attenuation

机译:实用的自适应滤波器控制,可实现精确的光束指向和跟踪,并具有抖动衰减

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摘要

The imaging, pointing, and tracking performance of precision optical systems are degraded by various disturbances which induce optical beam jitter. The present research proposes adaptive filter control methods for actively attenuating beam jitter using a fast steering mirror. Control loops with various structures of adaptive transversal filters are developed to suppress time-varying or uncertain jitter, and their characteristics and performances are compared. In particular, for situations when obtaining reference signals which are fully coherent with the disturbance is not possible, methods for incorporating multiple semi-coherent reference signals into the control law are developed. An index variable is defined to measure quality of various references signals, and a few signals are selected based on this index. The developed controllers are verified on a jitter control testbed, and experimental results show that the adaptive methods show superior performance in jitter attenuation over the conventional non-adaptive method.
机译:精密光学系统的成像,指向和跟踪性能会因各种干扰而降低,这些干扰会引起光束抖动。本研究提出了一种自适应滤波器控制方法,用于使用快速转向镜主动衰减光束抖动。开发了具有各种结构的自适应横向滤波器的控制环来抑制时变或不确定的抖动,并比较了它们的特性和性能。特别地,对于不可能获得与干扰完全相干的参考信号的情况,开发了将多个半相干参考信号合并到控制定律中的方法。定义了一个索引变量以测量各种参考信号的质量,并根据该索引选择一些信号。所开发的控制器在抖动控制测试台上得到了验证,实验结果表明,自适应方法在抖动衰减方面的性能优于传统的非自适应方法。

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