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February 8, 20260 citationsOpen Access

Low Latency and Multi-Target Camera-Based Safety System for Optical Wireless Power Transmission

CZChen ZuoTMTomoyuki Miyamoto

Key Points

  • The central aim is to develop a safety system for optical wireless power transmission that ensures human and equipment safety during laser exposure.
  • Created a camera-based safety system using automatic emission control to manage laser exposure.
  • Developed a customized deep learning object detection framework for real-time analysis.
  • Established a dedicated OWPT dataset for effective model training.
  • Implemented a multi-threaded control stack to enhance processing capabilities.
  • Achieved minimum response latency of 14 ms and average latency of 29 ms in the safety system.
  • Demonstrated reliable performance in managing multiple intrusion objects effectively.
  • Introduced a real-time risk factor metric that allows prioritization of threats based on proximity and velocity.

Abstract

Optical Wireless Power Transmission (OWPT) holds a significant position for enabling cable-free energy delivery in long-distance, high-energy, and mobile scenarios. However, ensuring human and equipment safety under high-power laser exposure remains a critical challenge. This study reports a vision-based OWPT safety system that implements the principle of automatic emission control (AEC)—dynamically modulating laser emission in real time to prevent hazardous exposure. While camera-based OWPT safety systems have been proposed in the concept, there are extremely limited working implementations to date. Moreover, existing systems struggle with response speed and single-object assumptions. To address these gaps, this research presents a low-latency safety architecture based on a customized deep learning-based object detection framework, a dedicated OWPT dataset, and a multi-threaded control stack. The research also introduces a real-time risk factor (RF) metric that evaluates proximity and velocity for each detected intrusion object (IO), enabling dynamic prioritization among multiple threats. The system achieves a minimum response latency of 14 ms (average 29 ms) and maintains reliable performance in complex multi-object scenarios. This work establishes a new benchmark for OWPT safety system and contributes a scalable reference for future development.

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Cite This Study

Zuo et al. (2026) studied this question.

synapsesocial.com/papers/698827f00fc35cd7a8846f6ahttps://doi.org/10.3390/photonics13020156
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