Design of algorithms for phase measurements by the use of phase stepping 论文

1996Applied Optics引用 490
Optical measurement and interference techniquesNon-Destructive Testing TechniquesNear-Field Optical Microscopy

详细信息

发表期刊/会议
Applied Optics
发表日期
1996-01-01
发表年份
1996

关键词

Optical measurement and interference techniquesNon-Destructive Testing TechniquesNear-Field Optical Microscopy

摘要

If the best phase measurements are to be achieved, phase-stepping methods need algorithms that are 112 insensitive to the harmonic content of the sampled waveform and 122 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.

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