Chinese Optics Letters, Volume. 19, Issue 10, 102601(2021)
Dual-frequency fringe for improving measurement accuracy of three-dimensional shape measurement
Fig. 1. Principle of the proposed dual-frequency method: (a) four phase-shifting patterns of fh; (b) four phase-shifting patterns of fl; (c) wrapped phase ϕh; (d) wrapped phase ϕl; (e) phase difference ϕd; (f) phase sum ϕs; (g) one cross section of the unwrapped phase difference Φd, fringe order kl, and wrapped phase ϕl; (h) one cross section of the phase sum ϕs, fringe order ks, and unwrapped phase Φl.
Fig. 2. Chart of the computer simulation process of the proposed dual-frequency by FPP.
Fig. 3. Computer simulation results of the proposed dual-frequency in 3D shape measurement. (a), (b) One cross section of wrapped phases (Tl = 170 pixels, Th = 150 pixels) and synthetic phases (Td = 1275 pixels, Ts = 79.7 pixels); (c) one cross section of wrapped phase ϕl, phase difference ϕd, and fringe order kl; (d) one cross section of wrapped phase ϕs, unwrapped phase Φl, and fringe order ks; (e) one cross section of the restored object’s height; (f) one cross section of the restored height error.
Fig. 4. Trend chart of measurement accuracy with the high frequency of 1/30 and changing low frequency.
Fig. 5. Reconstruction phase error of reference plane (a) by the conventional dual-frequency method and (b)–(f) by the proposed dual-frequency method with different low frequencies (fh = 1/45, and fl = 1/50, 1/70, 1/90, 1/120, 1/140).
Fig. 6. Experimental results of measuring a simple object: (a), (b) one of the captured fringe patterns of fh and fl (Th = 80 pixels, Tl = 85 pixels); (c), (d) wrapped phases ϕh and ϕl; (e) phase difference (Td = 1360 pixels); (f) wrapped phase sum (Ts = 41.2 pixels); (g) fringe order kl; (h) unwrapped phase Φl; (i) fringe order ks; (j) unwrapped phase sum Φs.
Fig. 7. Reconstruction of the object’s absolute phase (a) by the conventional dual-frequency method and (b)–(f) by the proposed dual-frequency method with different low frequencies (fh = 1/45, and fl = 1/50, 1/70, 1/90, 1/120, 1/140).
Fig. 8. Reconstruction phase errors with different low frequencies corresponding to Fig.
Fig. 9. Trend chart of measurement accuracy of actual experiments with a fixed high frequency and various low frequencies in measuring (a) the foam heart and (b) the petal.
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Zixiao Miao, Qican Zhang, "Dual-frequency fringe for improving measurement accuracy of three-dimensional shape measurement," Chin. Opt. Lett. 19, 102601 (2021)
Category: Physical Optics
Received: Dec. 30, 2020
Accepted: Mar. 18, 2021
Posted: Mar. 18, 2021
Published Online: Aug. 12, 2021
The Author Email: Qican Zhang (zqc@scu.edu.cn)