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Multi-head frequency-modulated continuous-wave ranging for real-time speckle suppression
Optics Express
|August 14, 2026
Summary
This study introduces a novel speckle suppression technique for optical frequency-modulated continuous-wave (FMCW) ranging. The multi-head interferometer method enhances real-time displacement measurement precision for industrial applications.
Area of Science:
- Optics
- Metrology
- Industrial Automation
Background:
- Optical frequency-modulated continuous-wave (FMCW) ranging offers high-precision, high-speed distance measurements crucial for factory automation.
- Speckle noise, caused by rough surfaces, degrades the precision of FMCW ranging by introducing measurement uncertainties.
- Real-time speckle suppression is essential for developing robust industrial displacement sensors.
Purpose of the Study:
- To develop and demonstrate a speckle suppression strategy for FMCW ranging systems.
- To improve the precision and reliability of real-time displacement measurements in industrial settings.
- To enable accurate ranging of targets with rough surfaces.
Main Methods:
- Implementation of a multi-head interferometer system based on FMCW ranging principles.
- Development and application of a signal selection algorithm to mitigate speckle-induced errors.
- Experimental validation of the speckle suppression technique.
Main Results:
- Significant reduction in excess uncertainty attributed to speckle noise.
- Demonstrated improvement in the precision of real-time displacement measurements.
- Successful suppression of speckle effects without complex methodologies.
Conclusions:
- The proposed multi-head interferometer with a signal selection algorithm effectively suppresses speckle in FMCW ranging.
- This technique enhances the precision of real-time displacement measurements for various materials.
- The strategy offers a pathway for advancing laser-based displacement sensing capabilities in industrial automation.
