Infrared and Laser Engineering, Volume. 50, Issue 5, 20210147(2021)

Design of high efficiency diode laser module for wireless power transmission

Juan Li1,2, Hao Yu1,2, Tiancheng Yu1,2, Yudan Gou1,2, Huomu Yang1, and Jun Wang1,2
Author Affiliations
  • 1College of Electronic Information, Sichuan University, Chengdu 610065, China
  • 2Suzhou Everbright Photonics Co., Ltd., Suzhou 215163, China
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    Laser wireless power transmission in unmanned aerial vehicle, satellite station and lunar robot power supply has potential application prospect, whose efficiency becomes the key to the application bottleneck. In order to improve the electro-optic conversion efficiency of the transmitter, the spot uniformity and the effective power ratio in window at the receiver, a design scheme of high efficiency diode laser for the transmitter of laser wireless power transmission was proposed. A high power and high efficiency diode laser system was designed, which is based on space combination with high efficiency, what’s more, the unevenness of the intensity at the receiving end can be optimized to 0.207, and the power ratio in the effective window is more than 94%. A laser wireless power transmission experimental device was built, whose power is over kilowatt, and the rectangular spot was outputted directly by diode laser system, which is matched with rectangular photovoltaic cell, thus the battery array layout rate was improved. The feature of multi-beam modulation was used to improve uniformity of the intensity, which is beneficial to improve the optic–electro conversion efficiency of battery and simplify the power management at the receiving end. The design and research provide reference for the practical application of laser wireless power transmission.

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    Juan Li, Hao Yu, Tiancheng Yu, Yudan Gou, Huomu Yang, Jun Wang. Design of high efficiency diode laser module for wireless power transmission[J]. Infrared and Laser Engineering, 2021, 50(5): 20210147

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    Paper Information

    Category: Lasers & Laser optics

    Received: Mar. 8, 2021

    Accepted: --

    Published Online: Aug. 13, 2021

    The Author Email:

    DOI:10.3788/IRLA20210147

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