Real-Time Energy Management of Parallel Hybrid Electric Vehicles Using Linear Quadratic Regulation

Author:

Nguyễn Bảo-HuyORCID,Trovão João Pedro F.ORCID,German Ronan,Bouscayrol Alain

Abstract

Optimization-based methods are of interest for developing energy management strategies due to their high performance for hybrid electric vehicles. However, these methods are often complicated and may require strong computational efforts, which can prevent them from real-world applications. This paper proposes a novel real-time optimization-based torque distribution strategy for a parallel hybrid truck. The strategy aims to minimize the engine fuel consumption while ensuring battery charge-sustaining by using linear quadratic regulation in a closed-loop control scheme. Furthermore, by reformulating the problem, the obtained strategy does not require the information of the engine efficiency map like the previous works in literature. The obtained strategy is simple, straightforward, and therefore easy to be implemented in real-time platforms. The proposed method is evaluated via simulation by comparison to dynamic programming as a benchmark. Furthermore, the real-time ability of the proposed strategy is experimentally validated by using power hardware-in-the-loop simulation.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

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2. Integration of ECMS Control Strategies Using QLearning Algorithm In Hybrid Electric Vehicles;2024 International Conference on Circuit, Systems and Communication (ICCSC);2024-06-28

3. Intelligent Charging Methods for Electric Vehicles;Advances in Chemical and Materials Engineering;2024-04-26

4. Effect of Operating Parameters on the Real-Time Torque Distribution of a Plug-In Electric Hybrid Vehicle;SAE International Journal of Sustainable Transportation, Energy, Environment, & Policy;2023-09-22

5. An Overview of Modelling and Energy Management Strategies for Hybrid Electric Vehicles;Applied Sciences;2023-05-11

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