Electric Power Allocation in a Network of Fast Charging Stations
I. Safak Bayram, George Michailidis, Michael Devetsikiotis, Fabrizio, Granelli

TL;DR
This paper proposes an energy-efficient power allocation and routing scheme for a network of fast charging stations with energy storage, improving customer service and station profitability under various operational scenarios.
Contribution
It introduces a novel scheme for optimal power and customer routing in charging networks, considering multiple complexity levels and real traffic data.
Findings
Substantial performance improvements over current operations
More customers served with same power, increasing profitability
Guarantees on customer blocking probabilities
Abstract
In order to increase the penetration of electric vehicles, a network of fast charging stations that can provide drivers with a certain level of quality of service (QoS) is needed. However, given the strain that such a network can exert on the power grid, and the mobility of loads represented by electric vehicles, operating it efficiently is a challenging problem. In this paper, we examine a network of charging stations equipped with an energy storage device and propose a scheme that allocates power to them from the grid, as well as routes customers. We examine three scenarios, gradually increasing their complexity. In the first one, all stations have identical charging capabilities and energy storage devices, draw constant power from the grid and no routing decisions of customers are considered. It represents the current state of affairs and serves as a baseline for evaluating the…
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