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Journal ArticleDOI

Optimal deployment of public charging stations for plug-in hybrid electric vehicles

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TLDR
In this article, the authors developed an equilibrium modeling framework that captures the interactions among availability of public charging opportunities, prices of electricity, and destination and route choices of plug-in hybrid electric vehicles (PHEVs) at regional transportation and power transmission networks coupled by PHEVs.
Abstract
This paper develops an equilibrium modeling framework that captures the interactions among availability of public charging opportunities, prices of electricity, and destination and route choices of plug-in hybrid electric vehicles (PHEVs) at regional transportation and power transmission networks coupled by PHEVs. The modeling framework is then applied to determine an optimal allocation of a given number of public charging stations among metropolitan areas in the region to maximize social welfare associated with the coupled networks. The allocation model is formulated as a mathematical program with complementarity constraints, and is solved by an active-set algorithm. Numerical examples are presented to demonstrate the models and offer insights on the equilibrium of the coupled transportation and power networks, and optimally allocating resource for public charging infrastructure.

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Inductive Wireless Power Transfer Charging for Electric Vehicles–A Review

TL;DR: A review of the status of Resonant Inductive Wireless Power Transfer Charging technology also highlighting the present status and its future of the wireless EV market is presented in this paper. But, the focus of this paper is not on the electric vehicles.
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Factors influencing the economics of public charging infrastructures for EV – A review

TL;DR: In this paper, growing concerns about energy conservation and the environmental impacts of greenhouse gas emissions over the world have promoted the development of the electric vehicles (EVs) market, however, one...
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Fast-charging station deployment for battery electric bus systems considering electricity demand charges

TL;DR: It is demonstrated that energy storage systems are a potential remedy for high demand charges from fast-charging, by explicitly considering the electricity demand charges in the optimal deployment problem of fast- charging stations for battery electric bus systems.
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Multistage large-scale charging station planning for electric buses considering transportation network and power grid

TL;DR: This study particularly focused on large-scale fast charging-station planning for e-buses in the public transportation electrification process, according to the characteristics of e-bus operation and plug-in fast charging mode.
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Plug-in electric vehicle charging infrastructure deployment of China towards 2020: Policies, methodologies, and challenges

TL;DR: In this article, a comprehensive understanding of the deployment process of plug-in electric vehicles (PEVs) in China is provided, and the barriers in the near-term deployment process are discussed and analyzed focusing on the efficiency of these policies.
References
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Book

Nonlinear Programming

Book

Mathematical Programs with Equilibrium Constraints

TL;DR: Results in the book are expected to have significant impacts in such disciplines as engineering design, economics and game equilibria, and transportation planning, within all of which MPEC has a central role to play in the modelling of many practical problems.
Journal ArticleDOI

Foundations of dynamic traffic assignment : the past, the present and the future

TL;DR: This opening paper will summarize the current understanding of DTA, review the existing literature, make the connection to the approaches presented in this special issue, and attempt to hypothesize about the future.
Journal ArticleDOI

CONOPT—A Large-Scale GRG Code

TL;DR: It is concluded that GRG codes can be very competitive with other codes for large-scale nonlinear programming from both an efficiency and a reliability point of view.
Journal ArticleDOI

Mathematical Programs with Complementarity Constraints: Stationarity, Optimality, and Sensitivity

TL;DR: Several stationarity concepts, based on a piecewise smooth formulation, are presented and compared and Fiacco-McCormick type second order optimality conditions and an extension of the stability results of Robinson and Kojima are presented.
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