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An Energy Management Strategy for Hybrid Energy Storage System Based on Reinforcement Learning

Publication Year: 2023

Author(s): Wang Y, Li W, Liu Z, Li L.

Abstract:

Due to the continuous high traction power impact on the energy storage medium, it is easy to cause many safety risks during the driving process, such as triggering the aging mechanism, causing rapid deterioration of the battery performance during the driving process, and even triggering thermal runaway. Hybrid energy storage is an effective way to solve this problem. The ultracapacitor is an energy storage device with high power density, which can withstand high instantaneous currents and be charged and discharged quickly. By combining batteries and ultracapacitors in a hybrid energy storage system, energy sources with different characteristics can be combined to take advantage of their respective strengths and increase the efficiency and lifetime of the system. The energy management strategy plays an important role in the performance of hybrid energy storage systems. Traditional optimization algorithms have difficulty improving the flexibility and practicality of applications. This paper proposes an energy management strategy based on reinforcement learning. The results indicate that the proposed reinforcement method can effectively distribute the charging and discharging conditions of the power supply and maintain the SOC of the battery and, at the same time, meet the power demand of working conditions at the cost of less energy loss and effectively realize the goal of optimizing the overall efficiency and effective energy management strategy.

Source of Publication: World Electric Vehicle Journal

Vol/Issue: 14(3), 57: 1-15p.

DOI No.: 10.3390/wevj14030057

Publisher/Organisation: MDPI

Rights: Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/)

URL:
https://www.mdpi.com/2032-6653/14/3/57

Theme: Vehicle Technology | Subtheme: Electric vehicles

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