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Research on Nonlinear Error Compensation Method for Interferometers Based on Tracker

机译:基于跟踪器的干涉仪非线性误差补偿方法研究

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摘要

A dynamic nonlinear error compensation method for the interferometers is proposed to meet the design demands of the tracker. It makes the system reach high precise measurement when the target is moving with high speed. With the passive compensation method of the optical path, part of the errors are eliminated. Thus, the periods of the signals could be counted accurately. A dynamic compensation method is proposed for the displacement in less than one period. By tracking the peak values and valley values of the interference signals in one cycle, the zero offsets error and unequal amplitude error can be compensated; then the quadrature phase shift error could be compensated by tracking the intersection of the two compensated signals. By tracking the signals and renewing the compensation parameters, the signals even with random nonlinear errors can get high-precision subdivision. Experiment results show that the system can get nanometer accuracy even the target is moving at high velocity. The system has better adaptability to different environment and anti-jamming capability.
机译:为了满足跟踪仪的设计要求,提出了一种干涉仪的动态非线性误差补偿方法。当目标高速移动时,它可使系统达到高精度测量。利用光路的无源补偿方法,可以消除部分误差。因此,可以精确地计算信号的周期。针对小于一个周期的位移,提出了一种动态补偿方法。通过在一个周期内跟踪干扰信号的峰值和谷值,可以补偿零偏移误差和不相等的幅度误差。那么可以通过跟踪两个补偿信号的交点来补偿正交相移误差。通过跟踪信号并更新补偿参数,甚至具有随机非线性误差的信号也可以得到高精度细分。实验结果表明,即使目标高速运动,该系统也可以达到纳米精度。该系统对不同环境具有更好的适应性和抗干扰能力。

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