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Susceptibility of systematic error-compensating algorithms to random noise in phase-shifting interferometry

机译:相移干涉术中系统误差补偿算法对随机噪声的敏感性

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In phase-shifting interferometry, many algorithms have been reported that suppress systematic errors caused by, e.g., nonlinear motion of the phase shifter and nonsinusoidal signal waveform. However, when a phase-shifting algorithm is designed to compensate for the systematic phase-shift errors, it becomes more susceptible to random noise and gives larger random errors in the measured phase. The susceptibility of phase-shifting algorithms to random noise is analyzed with respect to their immunity to phase-shift errors and harmonic components of the signal. It is shown that for the most common group of error-compensating algorithms for nonlinear phase shift, both random errors and the effect of high-order harmonic components of the signal cannot be minimized simultaneously. It is also shown that if an algorithm is designed to have extended immunity to nonlinear phase shift, simultaneous minimization becomes possible. (C) 1997 Optical Society of America.
机译:在相移干涉术中,已经报道了许多算法,这些算法抑制了例如由移相器的非线性运动和非正弦信号波形引起的系统误差。但是,当设计一种相移算法来补偿系统的相移误差时,它变得更容易受到随机噪声的影响,并在被测相位中产生较大的随机误差。关于移相算法对随机噪声的敏感性,就其对移相误差和信号谐波分量的抗扰性进行了分析。结果表明,对于最常见的非线性相移误差补偿算法,不能同时使随机误差和信号高次谐波分量的影响最小化。还表明,如果将算法设计为对非线性相移具有扩展的抗扰性,则同时最小化成为可能。 (C)1997年美国眼镜学会。

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