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Optimal scheduling of electric vehicle charging and vehicle-to-grid services at household level including battery degradation and price uncertainty

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TLDR
This study presents a scheduling algorithm for EVs under a real time pricing scheme with uncertainty that explicitly takes into account the cost of battery degradation not only when used to provide services to the system but also in terms of the EV utilisation for motion.
Abstract
It is expected that electric vehicles (EVs) will soon represent a large share of the demand for electricity. Several research works have extolled the advantages of these devices as flexible demands, not only to charge their batteries when it is cheaper to do so, but also to provide services in the form of vehicle-to-grid (V2G) power injections to the system. These services, however, could reduce the useful life of the battery and thus introduce a cost that needs to be taken into account when scheduling the charging of these vehicles. This study presents a scheduling algorithm for EVs under a real time pricing scheme with uncertainty. The objective function explicitly takes into account the cost of battery degradation not only when used to provide services to the system but also in terms of the EV utilisation for motion. The results show that the scheduling of the V2G services is sensitive to the electricity prices uncertainty and to the degradation costs derived from the energy arbitrage. Also, the optimal energy state of charge of the batteries is highly dependent on whether the cost of battery degradation is taken into account or not.

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Citations
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Journal ArticleDOI

Modeling of Lithium-Ion Battery Degradation for Cell Life Assessment

TL;DR: A semi-empirical lithium-ion battery degradation model that assesses battery cell life loss from operating profiles is proposed, combining fundamental theories of battery degradation and observations in battery aging test results.
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A survey on smart metering and smart grid communication

TL;DR: The smart metering and communication methods used in smart grid are being extensively studied owing to widespread applications of smart grid as mentioned in this paper, and the security requirements of hardware and software in a smart grid is presented according to their cyber and physical structures.
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Model-Free Real-Time EV Charging Scheduling Based on Deep Reinforcement Learning

TL;DR: A model-free approach based on deep reinforcement learning is proposed to determine the optimal strategy for charging strategy due to the existence of randomness in traffic conditions, user's commuting behavior, and the pricing process of the utility.
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Optimal Operation and Services Scheduling for an Electric Vehicle Battery Swapping Station

TL;DR: In this article, the authors proposed an optimization framework for the operating model of battery swapping stations, which considers the day-ahead scheduling process and uses inventory robust optimization and multi-band robust optimization to model electricity price uncertainty.
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Routing and Scheduling of Mobile Power Sources for Distribution System Resilience Enhancement

TL;DR: A novel mixed-integer programming model that resolves different timescales of MPS dispatch and DS operation, coupling of road and power networks, etc., is formulated to optimize dynamic dispatch of M PSs.
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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Robust discrete optimization and network flows

TL;DR: This work proposes a robust integer programming problem of moderately larger size that allows controlling the degree of conservatism of the solution in terms of probabilistic bounds on constraint violation, and proposes an algorithm for robust network flows that solves the robust counterpart by solving a polynomial number of nominal minimum cost flow problems in a modified network.
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Assessment of the Impact of Plug-in Electric Vehicles on Distribution Networks

TL;DR: In this article, the impact of different levels of plug-in electric vehicle penetration on distribution network investment and incremental energy losses is evaluated based on the use of a large-scale distribution planning model which is used to analyze two real distribution areas.
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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.
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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.
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