Smart Vehicular System: Demand, Curiosity, Challenges, And Power Electronics Skills

M. Bhaskar, D. Almakhles, Sanjeevikumar Padmanaban
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Abstract

In modern days, to achieve low emission of Green-House Gases (GHG), clean system, easy maintenance, high starting torque, and high efficiency, Internal Combustion (IC) engines are gradually being changed by electric motors. Smart vehicular systems (SV) either functioned from moderately or fully electrical energy generated from renewable sources. The energy storage, i.e., battery or ultra-capacitor system, gains energy from the IC engine. Alternative the electric grid, e.g., IC engines and electric grids are used to charge the battery in Hybrid Smart Electric Vehicle (H-SEV) and Plug-in Smart Electric Vehicle (PSEV), respectively. Power Electronics skills play an imperative role in the energy conversion between Grid-vehicle-Wheel (G-VW) and Wheel-vehicle-Grid (W-V-G). This letter discusses smart vehicular systems with their demand, curiosity, challenges, and power electronic skills.
智能车辆系统:需求、好奇、挑战和电力电子技术
在现代,为了实现温室气体(GHG)的低排放、系统清洁、易于维护、高启动扭矩和高效率,内燃机正逐渐被电动机所取代。智能车辆系统(SV)可以使用可再生能源产生的中度或完全电能。能量存储,即电池或超级电容器系统,从集成电路发动机获得能量。替代电网,例如IC发动机和电网分别用于混合动力智能电动汽车(H-SEV)和插电式智能电动汽车(PSEV)的电池充电。电力电子技术在电网-车辆-车轮(G-VW)和车轮-车辆-电网(W-V-G)之间的能量转换中起着至关重要的作用。这封信讨论了智能汽车系统的需求、好奇心、挑战和电力电子技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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