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Integration of electric vehicles in smart grid: A review on vehicle to grid technologies and optimization techniques

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TLDR
In this paper, the authors reviewed the framework, benefits and challenges of vehicle to grid technology and summarized the main optimization techniques to achieve different vehicle-to-grid objectives while satisfying multiple constraints.
Abstract
Energy crisis and environmental issues have encouraged the adoption of electric vehicle as an alternative transportation option to the conventional internal combustion engine vehicle. Recently, the development of smart grid concept in power grid has advanced the role of electric vehicles in the form of vehicle to grid technology. Vehicle to grid technology allows bidirectional energy exchange between electric vehicles and the power grid, which offers numerous services to the power grid, such as power grid regulation, spinning reserve, peak load shaving, load leveling and reactive power compensation. As the implementation of vehicle to grid technology is a complicated unit commitment problem with different conflicting objectives and constraints, optimization techniques are usually utilized. This paper reviews the framework, benefits and challenges of vehicle to grid technology. This paper also summarizes the main optimization techniques to achieve different vehicle to grid objectives while satisfying multiple constraints.

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Lithium-Ion Battery Storage for the Grid—A Review of Stationary Battery Storage System Design Tailored for Applications in Modern Power Grids

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Electric vehicles standards, charging infrastructure, and impact on grid integration: A technological review

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A Review on Electric Vehicles: Technologies and Challenges

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Enhancing smart grid with microgrids: Challenges and opportunities

TL;DR: In this paper, the authors present a detailed technical overview of microgrid and smart grid in light of present development and future trend, including existing technical challenges, communication features, policies and regulation, etc.
References
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Journal ArticleDOI

Vehicle-to-grid power fundamentals: Calculating capacity and net revenue

TL;DR: In this paper, the authors defined the three vehicle types that can produce V2G power and the power markets they can sell into, and developed equations to calculate the capacity for grid power from three types of electric drive vehicles.
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Vehicle-to-grid power implementation: From stabilizing the grid to supporting large-scale renewable energy

TL;DR: In this article, the authors examine the systems and processes needed to tap energy in vehicles and implement V2G and quantitatively compare today's light vehicle fleet with the electric power system.
Journal ArticleDOI

Development of an Optimal Vehicle-to-Grid Aggregator for Frequency Regulation

TL;DR: This work proposes an aggregator that makes efficient use of the distributed power of electric vehicles to produce the desired grid-scale power and applies the dynamic programming algorithm to compute the optimal charging control for each vehicle.
Journal ArticleDOI

Using fleets of electric-drive vehicles for grid support

TL;DR: In this article, the economic potential of two utility-owned fleets of battery-electric vehicles to provide power for a specific electricity market, regulation, in four US regional regulation services markets was evaluated.
Journal ArticleDOI

A conceptual framework for the vehicle-to-grid (V2G) implementation

TL;DR: A proposed framework to effectively integrate the aggregated battery vehicles into the grid as distributed energy resources to act as controllable loads to levelize the demand on the system during off-peak conditions and as a generation/storage device during the day to provide capacity and energy services to the grid.
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