Laser Power Transfer and Conversation Efficiency Optimization Scheme

Authors

  • Luoning Liu

DOI:

https://doi.org/10.54097/fv8rzy67

Keywords:

Photoelectric efficiency, conversion efficiency optimization, laser power transfer, wireless charge.

Abstract

In recent years, wireless charging technology has developed rapidly, providing many conveniences for people's lives. However, the demand for long-distance wireless charging, such as drones and satellites, is still unsatisfied. This article will introduce the laser power transfer technology, which can meet the needs of long-distance charging, introduce its principle, and compare it with traditional wireless charging methods. At the same time, three current photoelectric conversion efficiency optimization schemes of this technology will be introduced: modified PV receiver geometries, MPPT techniques, and secondary concentrator. Due to the use of special instruments, modified PV receiver geometries and the secondary concentrating method are expensive and difficult to have universality. Still, they are currently in the early stage of development and have great potential. The MPPT techniques have long been used in many photovoltaic fields and have perfect technology, but they cannot work normally under special circumstances, so they still need to be improved.

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References

[1] Pan Song. Research on the charging strategy of UAV laser wireless energy transmission. Chongqing University of Technology, 2023.

[2] Su Meng, Pan Kan, Li Jie. A review of the research on electromagnetic radiation wireless power transfer technology. Yunnan Electric Power Technology, 2021, 49 (05): 78 - 81.

[3] Zhou Weiyang. Research on key technologies of laser wireless power transmission system. Nanjing University of Aeronautics and Astronautics, 2018.

[4] Jin Ke, Zhou Weiyang. Wireless laser power transmission: A review of recent progress. IEEE Transactions on Power Electronics, 2018, 34 (4): 3842 - 3859.

[5] Yang Qingdong, Yang Huomu, Wang Jun, et al. MPPT integrated simulation system for laser wireless energy transfer. Infrared & Laser Engineering, 2022, 51 (05): 221 - 229.

[6] Zhou Weiyang, Jin Ke, Zhang Ran. A fast-speed GMPPT method for PV array under Gaussian laser beam condition in wireless power transfer application. IEEE Transactions on Power Electronics, 2022, 37 (8): 10016 - 10028.

[7] Meng Xiangxiang, Shen Jingshi, Shi Dele, et al. Research on secondary concentrating of optical wireless energy transmission and receiving system. Infrared & Laser Engineering, 2017, 46 (7): 705001 - 705010.

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Published

11-12-2024

How to Cite

Liu, L. (2024). Laser Power Transfer and Conversation Efficiency Optimization Scheme. Highlights in Science, Engineering and Technology, 119, 389-393. https://doi.org/10.54097/fv8rzy67