新能源汽车多类型能量收集潜力评价:系统综述与定量分析

IF 3.6 4区 工程技术 Q3 ENERGY & FUELS
Yifeng Fu, Xiaohu Gu, Pan Cao
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引用次数: 0

摘要

本文概述了新能源汽车(nev)能量收集技术的现状,并深入研究了新能源汽车在行驶、制动和克服风阻过程中所经历的重大能量损失。基于不同形式的能量损失,阐述了新能源汽车领域中流行的能量收集技术,重点介绍了振动能量、制动能量、风能收集的基本原理及其在实际应用中的最新进展。振动能量收集涉及将悬挂系统的机械能转换为电能,而制动能量收集将制动摩擦损失的一部分捕获为制动过程中的电能,风能收集利用车辆表面的风力发电机发电。通过定量评估不同类型系统的回收效果,该报告展示了能量收集技术在提高能源效率和扩大新能源汽车范围方面的巨大潜力。此外,它还探讨了能源收集技术的未来发展轨迹,设想将其整合为新能源汽车的标准功能,并预示着全球能源和运输部门的变革进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating the Potential of Multitype Energy Harvesting in New Energy Vehicles: A Systematic Review and Quantitative Analysis

This review presents an overview in the context of the current state of the art in energy harvesting technologies for new energy vehicles (NEVs) and delves into the significant energy losses experienced by NEVs during driving, braking, and overcoming wind resistance. Based on the different forms of energy losses, the prevalent energy harvesting technologies in the NEV domain are elucidated, with a focus on the fundamental principles of vibration energy, braking energy, wind energy harvesting, and their recent advancements in practical implementations. Vibration energy harvesting involves the conversion of mechanical energy from the suspension system into electrical energy, while brake energy harvesting captures a portion of the brake friction loss as electrical energy during braking, and wind energy harvesting utilizes wind power generators on the vehicle surface to produce electricity. By quantitatively evaluating the recovery effects of different types of systems, the report demonstrates the great potential of energy harvesting technologies to improve energy efficiency and extend the range of NEVs. Furthermore, it explores the future trajectory of energy harvesting technology, envisioning its integration as a standard feature in NEVs and heralding transformative progress in the global energy and transportation sectors.

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来源期刊
Energy technology
Energy technology ENERGY & FUELS-
CiteScore
7.00
自引率
5.30%
发文量
0
审稿时长
1.3 months
期刊介绍: Energy Technology provides a forum for researchers and engineers from all relevant disciplines concerned with the generation, conversion, storage, and distribution of energy. This new journal shall publish articles covering all technical aspects of energy process engineering from different perspectives, e.g., new concepts of energy generation and conversion; design, operation, control, and optimization of processes for energy generation (e.g., carbon capture) and conversion of energy carriers; improvement of existing processes; combination of single components to systems for energy generation; design of systems for energy storage; production processes of fuels, e.g., hydrogen, electricity, petroleum, biobased fuels; concepts and design of devices for energy distribution.
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