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DESIGN OF ALGORITHMS FOR PHASE MEASUREMENTS BY THE USE OF PHASE STEPPING

机译:利用相位步进法设计相位测量算法

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摘要

If the best phase measurements are to be achieved, phase-stepping methods need algorithms that are (1) insensitive to the harmonic content of the sampled waveform and (2) insensitive to phase-shift miscalibration. A method is proposed that permits the derivation of algorithms that satisfy both requirements, up to any arbitrary order. It is based on a one-to-one correspondence between an algorithm and a polynomial. Simple rules are given to permit the generation of the polynomial that corresponds to the algorithm having the prescribed properties. These rules deal with the location and multiplicity of the roots of the polynomial. As a consequence, it can be calculated from the expansion of the products of monomials involving the roots. Novel algorithms are proposed, e.g., a six-sample one to eliminate the effects of the second harmonic and a 10-sample one to eliminate the effects of harmonics up to the fourth order. Finally, the general form of a self-calibrating algorithm that is insensitive to harmonics up to an arbitrary order is given. [References: 17]
机译:如果要实现最佳的相位测量,则相位步进方法需要的算法是(1)对采样波形的谐波含量不敏感,以及(2)对相移失准不敏感。提出了一种方法,该方法允许推导满足两个要求的算法,直到任意顺序。它基于算法和多项式之间的一一对应关系。给出了简单的规则以允许生成与具有规定属性的算法相对应的多项式。这些规则处理多项式根的位置和多重性。结果,可以从涉及根的单项式的乘积的扩展来计算。提出了新颖的算法,例如,一个六样本的算法消除了二次谐波的影响,而一个十样本的算法消除了高达四阶谐波的影响。最后,给出了对谐波任意阶次不敏感的自校准算法的一般形式。 [参考:17]

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