Energy Management of Parallel Hybrid Electric Vehicle Based on Fuzzy Logic Control Strategies

Author:

Halima Naila Ben1ORCID,Hadj Naourez Ben1,Chaieb Mohamed2,Neji Rafik1

Affiliation:

1. Department of Electrical Engineering, ENIS, University of Sfax, Sfax 3038, Tunisia

2. Department of Electrical Engineering, ENICARTHAGE, University of Carthage, Tunis 2035, Tunisia

Abstract

Currently, the parallel hybrid electric vehicle (PHEV) is the most common type of architecture on the hybrid vehicle market. Therefore, a PHEV can be a solution to reduce emission and fuel consumption. The main challenge in the development of HEVs is the power management between the components that ensure vehicle movement. Energy management is now highly necessary by applying a control strategy (CS) in the vehicle’s traction chain, which directly affects the PHEV emission and fuel economy. The CSs have different performances, namely the control of the different power sources operation mode and the control of the battery state of charge. For this purpose, we propose a fuzzy logic CS to optimize emissions (FLCS-em) for PHEV. To assess this approach, we compare it with the most commonly used and recent EMS, in particular the strategy to optimize fuel use (FLCS-f), the efficiency optimization strategy (FLCS-eff) and the electric assist CS (EACS), in urban and highway driving cycles. The results show that the elaborate FLCS-em, characterized by a limited number of rulers, provide significant advantage than CSs mentioned in terms of the efficiency of PHEV performance and emissions and fuel consumption minimization.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Media Technology

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1. Enhancing Electric Vehicle Efficiency through an ANFIS Controller-Driven Energy Management System;2023 4th International Conference on Intelligent Technologies (CONIT);2024-06-21

2. Working mode division and shift schedule extraction of a parallel hybrid power system;Journal of Physics: Conference Series;2024-06-01

3. Fuzzy Logic Speed Advisory System for Optimal Energy Efficiency Based on Fuel Consumption and Road Speed Limit;2024 IEEE 15th International Colloquium on Logistics and Supply Chain Management (LOGISTIQUA);2024-05-02

4. Research on Predictive Control Energy Management Strategy for Composite Electric Ship Based on Power Forecasting;EAI Endorsed Transactions on Energy Web;2024-04-03

5. Fuel consumption comparative optimization for parallel hybrid electric vehicle based on PSO and DIRECT algorithms;Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering;2024-03-04

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