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Assisting Residential Distribution Grids in Overcoming Large-Scale EV Preconditioning Load., , , , , и . IEEE Syst. J., 16 (3): 4345-4355 (2022)Coordinated Charging and Discharging of Electric Vehicles: A New Class of Switching Attacks., , , и . ACM Trans. Cyber Phys. Syst., 6 (3): 23:1-23:26 (2022)Impact Analysis of EV Preconditioning on the Residential Distribution Network., , , , , и . SmartGridComm, стр. 1-6. IEEE, (2020)Demand-Aware Provisioning of Electric Vehicles Fast Charging Infrastructure., , , , и . IEEE Trans. Veh. Technol., 69 (7): 6952-6963 (2020)5GFIVer: Functional Integrity Verification for 5G Cloud-Native Network Functions., , , , , , и . CloudCom, стр. 162-169. IEEE, (2022)A Detailed Security Assessment of the EV Charging Ecosystem., , , , и . IEEE Netw., 34 (3): 200-207 (2020)A Tenant-based Two-stage Approach to Auditing the Integrity of Virtual Network Function Chains Hosted on Third-Party Clouds., , , , , , , и . CODASPY, стр. 79-90. ACM, (2023)Demand Aware Deployment and Expansion Method for an Electric Vehicles Fast Charging Network., , , , и . SmartGridComm, стр. 1-7. IEEE, (2019)Optimal Scheduling of EV Charging at a Solar Power-Based Charging Station., , , и . IEEE Syst. J., 14 (3): 4221-4231 (2020)A Data Driven Performance Analysis Approach for Enhancing the QoS of Public Charging Stations., , , и . IEEE Trans. Intell. Transp. Syst., 23 (8): 11116-11125 (2022)