Heterogeneous Electric Vehicle Charging Coordination: A Variable Charging Speed Approach

Date
2019-01-08
Authors
Valogianni, Konstantina
Ketter, Wolfgang
Collins, John
Adomavicius, Gediminas
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We present a coordination mechanism that reduces peak demand coming from EV charging, supports grid stability and environmental sustainability. The proposed mechanism accounts for individual commuting preferences, as well as desired states of charge by certain deadlines, which can serve as a proxy for range anxiety. It can shape EV charging toward a desired profile, without violating individual preferences. Our mechanism mitigates herding, which is typical in populations where all agents receive the same price signals and make similar charging decisions. Furthermore, it assumes no prior knowledge about EV customers and therefore learns preferences and reactions to prices dynamically. We show through simulations that our mechanism induces a less volatile demand and lower peaks compared to currently used benchmarks.
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Monitoring, Control and Protection, Electric Energy Systems, EV charging coordination, grid stability, heterogeneous customers, variable-rate pricing
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10 pages
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Proceedings of the 52nd Hawaii International Conference on System Sciences
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Attribution-NonCommercial-NoDerivatives 4.0 International
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