三维测量中基于振动移相的相位展开方法

IF 4.3 2区 综合性期刊 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Wei Liang;Wenju Zhou;Desen Luo
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引用次数: 0

摘要

时间相位展开(TPU)方法以其高性能得到了广泛的应用。然而,现有的TPU方法需要投影条纹图案而不是相移图案来辅助确定相序,这严重影响了测量效率和速度。为了解决这一问题,我们提出了一种基于振动相移(VPS)的三维测量相位展开方法。该方法通过改变不同相移条纹的光强来改进传统相移条纹,从而在相移条纹内嵌入周期信息。周期信息被用来帮助确定阶段顺序,从而避免在阶段展开过程中投射额外的模式。该方法首先利用正弦模式进行相位计算,然后采用两种特定的正弦模式,相移量之和为$2\pi $,得到周期性分布的相位阶数。通过在移相条纹中嵌入周期信息,将周期性分布的相位序列转换为连续的相位序列,从而完成相位解包裹,实现对目标的测量。在球体和雕塑上进行了测量,以验证所提出方法的可行性。实验结果表明,与其他TPU方法相比,该方法可以在不投射额外条纹图案的情况下测量物体,具有更快的测量速度和更高的测量效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase Unwrapping Method Based on Vibrational Phase Shifting for 3-D Measurement
The temporal phase unwrapping (TPU) method is widely utilized for its high performances. However, the existing TPU methods require projecting fringe patterns other than phase shifting patterns to assist in determining phase orders, which significantly affects the measurement efficiency and speed. To address this issue, we propose a phase unwrapping method based on vibrational phase shifting (VPS) for 3-D measurement. The method improves the conventional phase shifting fringes by changing the light intensity of different fringes, thereby embedding period information within the phase shifting fringes. The period information is utilized to help determine phase orders, thereby avoiding projecting additional patterns during the phase unwrapping process. The method first utilizes the sinusoidal patterns for phase calculation and then employs two specific sinusoidal patterns with a sum phase shifting amount of $2\pi $ to obtain periodically distributed phase orders. Through the period information embedded in the phase shifting fringes, the periodically distributed phase orders are converted into continuous ones, thereby completing phase unwrapping and achieving measurement of the object. Measurements on a sphere and a sculpture were conducted to verify the feasibility of the proposed method. Experimental results demonstrate that the method enables the measurement of objects without projecting additional fringe patterns, offering faster measurement speed and higher measurement efficiency compared to other TPU methods.
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来源期刊
IEEE Sensors Journal
IEEE Sensors Journal 工程技术-工程:电子与电气
CiteScore
7.70
自引率
14.00%
发文量
2058
审稿时长
5.2 months
期刊介绍: The fields of interest of the IEEE Sensors Journal are the theory, design , fabrication, manufacturing and applications of devices for sensing and transducing physical, chemical and biological phenomena, with emphasis on the electronics and physics aspect of sensors and integrated sensors-actuators. IEEE Sensors Journal deals with the following: -Sensor Phenomenology, Modelling, and Evaluation -Sensor Materials, Processing, and Fabrication -Chemical and Gas Sensors -Microfluidics and Biosensors -Optical Sensors -Physical Sensors: Temperature, Mechanical, Magnetic, and others -Acoustic and Ultrasonic Sensors -Sensor Packaging -Sensor Networks -Sensor Applications -Sensor Systems: Signals, Processing, and Interfaces -Actuators and Sensor Power Systems -Sensor Signal Processing for high precision and stability (amplification, filtering, linearization, modulation/demodulation) and under harsh conditions (EMC, radiation, humidity, temperature); energy consumption/harvesting -Sensor Data Processing (soft computing with sensor data, e.g., pattern recognition, machine learning, evolutionary computation; sensor data fusion, processing of wave e.g., electromagnetic and acoustic; and non-wave, e.g., chemical, gravity, particle, thermal, radiative and non-radiative sensor data, detection, estimation and classification based on sensor data) -Sensors in Industrial Practice
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