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Journal ArticleDOI

Review of Battery Charger Topologies, Charging Power Levels, and Infrastructure for Plug-In Electric and Hybrid Vehicles

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TLDR
In this paper, the authors present the current status and implementation of battery chargers, charging power levels, and infrastructure for plug-in electric vehicles and hybrid vehicles and classify them into off-board and on-board types with unidirectional or bidirectional power flow.
Abstract
This paper reviews the current status and implementation of battery chargers, charging power levels, and infrastructure for plug-in electric vehicles and hybrids. Charger systems are categorized into off-board and on-board types with unidirectional or bidirectional power flow. Unidirectional charging limits hardware requirements and simplifies interconnection issues. Bidirectional charging supports battery energy injection back to the grid. Typical on-board chargers restrict power because of weight, space, and cost constraints. They can be integrated with the electric drive to avoid these problems. The availability of charging infrastructure reduces on-board energy storage requirements and costs. On-board charger systems can be conductive or inductive. An off-board charger can be designed for high charging rates and is less constrained by size and weight. Level 1 (convenience), Level 2 (primary), and Level 3 (fast) power levels are discussed. Future aspects such as roadbed charging are presented. Various power level chargers and infrastructure configurations are presented, compared, and evaluated based on amount of power, charging time and location, cost, equipment, and other factors.

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Electric vehicles and smart grid interaction: A review on vehicle to grid and renewable energy sources integration

TL;DR: In this paper, the authors present a comprehensive review and assessment of the latest research and advancement of electric vehicles (EVs) interaction with smart grid portraying the future electric power system model.
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Compensation Topologies of High-Power Wireless Power Transfer Systems

TL;DR: This paper provides a comprehensive review of existing compensation topologies for the loosely coupled transformer and discusses the compensation requirements for achieving the maximum efficiency according to different WPT application areas.
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Automotive Li-Ion Batteries: Current Status and Future Perspectives

TL;DR: In this article, the authors set the extensive market penetration of lithium-ion battery-powered EVs as an ultimate objective and then discussed recent advances and challenges of electric automobiles, mainly focusing on critical element resources, present and future EV markets, and the cost and performance of Li-ion batteries.
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Wireless Power Transfer for Vehicular Applications: Overview and Challenges

TL;DR: In this paper, a comprehensive review of charging pad, power electronics configurations, compensation networks, controls, and standards is presented, along with a detailed analysis of the charging range of EVs.
Journal ArticleDOI

A Comprehensive Review of Wireless Charging Technologies for Electric Vehicles

TL;DR: This paper provides a comprehensive, state-of-the-art review of all the wireless charging technologies for electric vehicle (EVs), characteristics and standards available in the open literature, as well as sustainable implications and potential safety measures.
References
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Proceedings ArticleDOI

Single-phase bidirectional AC-DC converters for plug-in hybrid electric vehicle applications

TL;DR: In this paper, the basic requirements and specifications for PHEV bidirectional AC-DC converter designs are presented, and evaluation of the two converter topologies are analyzed in detail.
Journal ArticleDOI

Consideration on Cordless Power Station-contactless power transmission system

TL;DR: In this paper, the authors suggest the structure consisting of meander coils (meander type), which has allowances in coil displacement and is easy to be set up, and make a comparison in characteristics between spiral type and meander type.
Proceedings ArticleDOI

Large air gap coupler for inductive charger

TL;DR: In this article, a novel magnetic coupler with large air gap is presented for the electric vehicle's automatic inductive charger, which has sufficient exciting inductance, even if it has a large gap, and the conversion efficiency with the coupler and a MOSFETs full-bridge inverter of 100 kHz is 97% at 8.3 kW output.
Proceedings ArticleDOI

A low-cost, digitally-controlled charger for plug-in hybrid electric vehicles

TL;DR: In this paper, a low-cost onboard charger for plug-in hybrid electric vehicles (HEVs) is presented and verified experimentally, which utilizes the already available main traction and auxiliary motors and associated power electronics systems of an HEV.
Journal ArticleDOI

Methodology to Analyze the Economic Effects of Electric Cars as Energy Storages

TL;DR: A generic model is introduced to analyze the feasibility of electric vehicles as energy storages in distribution networks and answers the question of how to define the feasible level of energyStorages (batteries) in the distribution system.
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