Intelligent Energy Management System for Electric Vehicles
A special issue of Electronics (ISSN 2079-9292). This special issue belongs to the section "Electrical and Autonomous Vehicles".
Deadline for manuscript submissions: closed (28 February 2022) | Viewed by 9755
Special Issue Editors
Interests: electric vehicles; energy management systems; model predictive control; optimal control theory; vehicle cybersecurity
Interests: electric power grid modernization; energy systems integration; de-centralized and autonomous power architectures; data-driven analytics; renewable integration
Special Issues, Collections and Topics in MDPI journals
Special Issue Information
Dear Colleagues,
Electric vehicles (EVs) have received increasing attention in recent years with stringent standards and regulations on emissions. Compared with an internal combustion engine (ICE) vehicles, new-energy EVs are a promising renewable technology for a sustainable energy future. In particular, battery EVs with a large energy storage system (e.g., lithium iron phosphate (LiFePO4) battery), are expected to provide efficiencies of up to 80%. However, the relatively short driving range has been the main barrier for prospective customers.
Today, onboard navigation systems, vehicle-to-vehicle (V2V), and vehicle-to-x (V2X) in modern connected vehicles help to gain traffic information over the preview route segment, which opens up unprecedented opportunities for improving energy efficiency. Thus, the combination of eco-driving and energy management in powertrains makes intelligent energy management systems (EMS) for EVs a hot topic in academia and the automotive industry. In particular, establishing a unitized system architecture consisting of external traffic, geographic information, and the powertrain system for the best energy efficiency is one of the most important emerging problems to be studied.
The main aim of this Special Issue is to seek high-quality submissions that highlight intelligent EMS. The topics of interest include but are not limited to the power/torque split for EVs and hybrid electric vehicles (HEVs), velocity profile optimization and eco-driving considering upcoming traffic, EMS considering battery health and driving range, energy-efficient control for electric drives in EVs, EMS concerning the uncertainty of energy models (e.g., time-varying efficiency maps), connoted and automated EVs, learning-based EMS, and real-time model predictive control in EMS. We invite contributions from experimentalists and theorists to submit their high-quality manuscripts for publication in this Special Issue.
Dr. Lulu Guo
Dr. Liang Du
Guest Editor
Manuscript Submission Information
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Keywords
- Power/torque split for EVs and HEVs
- Eco-driving considering upcoming traffic
- EMS considering battery health and driving range
- Energy-efficient control for electric drives in EVs
- EMS concerning the uncertainty of energy models
- Connoted and automated EVs
- Learning-based EMS
- Real-time model predictive control in EMS
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