Aug 2026· International Conference on Circuit, Power and Computing Technologies· pp. 1080-1087· 0 citations· 21 references
Abstract
The fast pace of electric vehicle (EV) adoption has increased pressure on effective, consistent, and scalable charging infrastructure. In this paper, I provide a detailed overview of the EV charging system, including charging technologies, station designs, power flow designs, standards, and optimization methods. The most developed and implemented technology is known as conductive charging and wireless charging has better convenience to the user with continuous efficiency and cost problem. The different charging structures, such as the AC, DC, hybrid, and renewable-integrated architecture are contrasted in performance, scale, and interacting with the grids. The course of power transmission between Grid-to-Vehicle (G2V) and Vehicle-to-Grid (V2G) and voice-to-Everything (V2X) are mentioned and the use of EVs as active energy sources is noted. Artificial intelligence-based smart charging methods are demonstrated to increase grid stability and energy management. Moreover, such critical issues as grid overload, battery degradation, security concerns, and the absence of standardization is discussed. Lastly, the research directions towards an intelligent, sustainable, and decentralized solution to charging are described.
The rapid evolution of global energy systems, driven by environmental concerns and the ongoing energy crisis, has significantly accelerated the transition toward sustainable technologies, particularly in the transportation sector. Electric vehicles (EVs) have emerged as a viable alternative to conventional internal com...
P. Shah, N. A. Reddy, K. S. Rani et al.· International Transactions o...· 0 citations
Electric vehicles are proving to be a potential solution to cut the GHGs emissions and enhance the energy efficiency in transportation. Concurrently, advanced charging infrastructure, novel battery concepts, and smart energy management systems have evolved at a fast pace, driven by both the increasing environmental awa...
T.Rajesh, Bhupesh Kumar Namdeti, D.Velmurugan et al.· 2026 International Conferenc...· 0 citations
The rapid growth of electric vehicles (EVs) poses a significant challenge to power grid stability and charging infrastructure. This paper proposes a dynamic control framework for grid-connected electric vehicle (EV) charging systems that can easily switch between grid-to-vehicle (G2V) and vehicle-to-grid (V2G) modes. T...
Ram Kumar, Vicky Vikrant· International Conference Inn...· 0 citations
Electric vehicle (EV) adoption is outpacing grid-only charging infrastructure, which aggravates peak demand, causes voltage instability, and is difficult to deploy in weak-grid or remote regions. Renewable-integrated charging - combining solar, wind, and hybrid generation with storage, power electronics, and intelligen...
Aryan Aurangpure, Manthan Somankar, Parth Kolte et al.· 2026 International Conferenc...· 0 citations
Electric vehicles are rapidly reshaping global transportation, emerging as a central pillar of efforts to cut greenhouse gas emissions and end dependence on fossil fuels. This review provides a critical and integrative synthesis of recent advances in electric vehicle technologies, focusing on three interconnected domai...
Sachin Kumar Sharma, Lokesh Kumar Sharma, S. Milojević et al.· Energies· 1 citation
Transportation electrification is a central component of future sustainable energy systems, and the large-scale deployment of electric vehicles (EVs) requires charging infrastructure that is efficient, interoperable, grid-compatible, and suitable for standardized deployment. Wireless power transfer (WPT) is increasingl...
H. Lian· Advanced Electromagnetics· 0 citations
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