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电动汽车动力系统技术综述:分类、广泛采用的拓扑及未来挑战
Critical Review on Powertrain Technologies for Electric Vehicles: Classification, Broadly Adopted Topologies, and Future Challenges
| 作者 | Sadeq Ali Qasem Mohammed · Samer Saleh Hakami · Mahmoud Kassas · Mohammad M. Almuhaini |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 充电桩 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电动汽车 动力系统技术 电池问题 充电系统 技术创新 |
语言:
中文摘要
电动汽车EV转型的核心在于驱动系统,用电机和电池替代传统内燃机ICE。然而电池限制、能量密度、充电速度、充电基础设施不足、成本和关键材料依赖等问题阻碍EV推广。本文全面综述EV动力系统技术,讨论高效充电系统和高输出功率所需的关键要素。通过采用先进功率电子器件如SiC和GaN、高效功率拓扑、固态电池和硅负极电池、热管理等技术可实现这些目标。文章探讨阻碍EV性能的关键技术挑战及解决方案,明确分类最新动力系统技术、广泛采用的变换器及未来趋势,包括下一代固态电池突破和充电站可及性改善,并提供可再生能源集成以增强EV可持续性的建设性见解。
English Abstract
The shift toward electric vehicles (EVs) is inspired by the commitment to mitigate emissions and reliance on fossil fuels, with drive systems at the core of the transformation. EVs replace the traditionally internal combustion engines (ICE) by adopting electric motors powered by batteries. However, there are major issues that may complicate the adoption of EVs including battery limitations, energy density, charging speed, insufficient charging stations, cost, and reliance on critical materials for instance, lithium and cobalt. This paper provides a holistic review about powertrain technologies for EVs discussing the key elements to be considered to ensure efficient charging system, high output power to increase the charging speed, etc. These can be achieved by incorporating cutting-edge technologies in switching power electronic devices (i.e., utilizing silicon-carbide and gallium-nitride), broadly efficient power topologies, leveraging solid-state and silicon anode batteries, thermal management, etc. It also explores several critical technological challenges that impede the performance of EVs, including battery degradation, charging infrastructure, and other related issues along with solutions to address these challenges, such as advancements in battery chemistry, the development of higher energy-density materials, and the implementation of advanced thermal management systems to enhance overall efficiency and longevity. In top of that, this review clearly highlights the classification of the recently adopted power train technologies, broadly adopted converters, as well as future trends on breakthroughs in next-generation solid-state batteries with higher energy density and faster charging, and charging station accessibility improvement. It also offers a constructive insight on integrating some renewable energy sources to enhance EV accessibility and sustainability. Overall, while challenges remain, innovations in batteries, electronics, and infrastructure are paving the way for broader EV adoption.
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SunView 深度解读
该综述与阳光电源新能源汽车电驱控产品线高度契合。阳光重点发展SiC和GaN功率器件在车载充电机OBC和电驱系统中的应用,提升功率密度和效率。阳光车载OBC支持快充协议,与文中提到的高功率充电系统一致。该综述强调的热管理技术对阳光电驱产品的可靠性提升有重要参考价值。阳光还可结合光储充一体化方案,将可再生能源集成到充电基础设施中,推动绿色出行生态建设。