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Two-Stage coordination scheme for multiple EV charging stations connected to an exclusive DC feeder considering grid-tie converter limitation
Saber, H ; Sharif University of Technology | 2024
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- Type of Document: Article
- DOI: 10.1109/TTE.2024.3357217
- Publisher: 2024
- Abstract:
- The rapid proliferation of electric vehicles (EVs), if not properly integrated, has the potential to impact the secure and economic operation of distribution systems. To tackle this challenge, the system operators and planners have two primary options: 1) expanding system capacity and 2) implementing charging management programs. In this article, we consider an exclusive dc feeder for supplying multiple EV charging stations, connected to the main grid via the grid-tie converter. In addition, a two-stage coordination algorithm is proposed in which the EV charging stations' daily quotas from the grid-tie converter capacity and their day-ahead scheduling plans are determined in the first stage. In this regard, the EV charging stations determine their profit curves, and then the local market operator (LMO) collects these curves and calculates the quotas by maximizing the total profit respecting the capacity constraint. Considering the calculated quotas, the EV charging stations determine and submit their day-ahead scheduling plans to the LMO. In the second stage, each EV charging station manages its real-time operation under the uncertainties of EV parking activities. To this end, the model predictive control (MPC) method is used to effectively handle model uncertainties. Furthermore, to encourage EV owners' participation in the charging control program, the EV charging station's profit is fairly distributed among EVs based on their provided flexibility. Finally, the simulation study is provided to illustrate the effectiveness and applicability of the proposed model from the perspective of system operation and EV owners. © 2024 IEEE
- Keywords:
- Grid-tie converter limitation ; Model predictive control (MPC) ; Profit-sharing mechanism ; Two-stage algorithm ; Charging (batteries) ; Predictive control systems ; Profitability ; Secondary batteries ; Uncertainty analysis ; Battery ; Charging managements ; Electric vehicle charging management ; Privacy ; Sharing mechanism ; States of charges ; Uncertainty ; Electric power distribution
- Source: IEEE Transactions on Transportation Electrification ; Volume 10, Issue 4 , 2024 , Pages 8213-8223 ; 23327782 (ISSN)
- URL: https://ieeexplore.ieee.org/document/10414177
