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When measuring distances in areas with physical obstructions, such as a lake in a field, surveyors must employ techniques to calculate accurate lengths without direct line measurements. One effective method is the offset technique, which allows for precise distance estimation over inaccessible stretches.In this scenario, a surveyor must measure a side of an area that crosses a lake. Since the measuring tape cannot span the lake, the surveyor begins by establishing a baseline that aligns with...
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Related Experiment Video

Updated: Sep 11, 2025

Characterization of SiN Integrated Optical Phased Arrays on a Wafer-Scale Test Station
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Lightweight and compact three-axis angle measurement method based on an optical wedge.

Jinkai Wang, Yangyang Bai, Hongjie Lu

    Optics Express
    |August 13, 2025
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    Summary
    This summary is machine-generated.

    A new non-contact method precisely measures three-axis angles for airborne gimbals using an optical wedge and two PSDs. This technique ensures high-speed, accurate angle measurements in confined spaces.

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    Area of Science:

    • Optoelectronics and Optical Engineering
    • Mechanical Engineering and Systems Design

    Background:

    • Existing non-contact three-axis angle measurement techniques are inadequate for the specific requirements of airborne optoelectronic gimbal platforms.
    • The inner and outer ring frames of these platforms necessitate specialized angle measurement solutions due to space constraints and dynamic operational demands.

    Purpose of the Study:

    • To propose and validate a novel non-contact three-axis angle measurement method suitable for airborne optoelectronic gimbal platforms.
    • To develop a compact, high-speed, and wide-range measurement system for confined spaces.
    • To establish and refine an accurate angle calculation model for the proposed system.

    Main Methods:

    • Utilized an optical wedge as a reflector and two Position Sensitive Detectors (PSDs) as light spot receivers.
    • Derived an angle calculation model based on space vector analysis.
    • Employed ternary multiple regression to fit and correct model errors, followed by prototype development and experimental validation.

    Main Results:

    • Experimental results demonstrate the system's capability for high-speed, non-contact three-axis angle measurements within ±2° range.
    • Root Mean Square (RMS) errors for pitch angle (α) were as low as 7.79 arcseconds at 8mm distance.
    • RMS errors for yaw angle (β) were as low as 1.51 arcseconds at 10mm distance, and for roll angle (γ) were 15.61 arcseconds at 12mm distance.

    Conclusions:

    • The proposed optical wedge and PSD-based method provides a viable solution for non-contact three-axis angle measurement in airborne optoelectronic gimbal platforms.
    • The system exhibits a compact structure, wide measurement range, and fast measurement speed, suitable for confined spaces.
    • The developed angle calculation model, enhanced by regression-based error correction, achieves high accuracy validated through experimental testing.