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Enabling Optimal Control Under Demand Elasticity for Electric Vehicle Charging Systems.

, , , , and . IEEE Trans. Mob. Comput., 21 (3): 955-970 (2022)

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Optimizing Cross-Line Dispatching for Minimum Electric Bus Fleet., , , , , , and . IEEE Trans. Mob. Comput., 22 (4): 2307-2322 (April 2023)Social-Aware Content Sharing in D2D Communications: An Optimal Stopping Approach., , , , and . ICC, page 1-6. IEEE, (2018)Joint Scheduling and Incentive Mechanism for Spatio-Temporal Vehicular Crowd Sensing., , , , , , , and . IEEE Trans. Mob. Comput., 20 (4): 1449-1464 (2021)Towards Minimum Fleet for Ridesharing-Aware Mobility-on-Demand Systems., , , , , and . INFOCOM, page 1-10. IEEE, (2021)Joint Order Dispatch and Repositioning for Urban Vehicle Sharing Systems via Robust Optimization., , , , , and . ICDCS, page 663-673. IEEE, (2021)Multi-Objective Order Dispatch for Urban Crowd Sensing with For-Hire Vehicles., , , , , and . INFOCOM, page 1-10. IEEE, (2023)Joint Order Dispatch and Charging for Electric Self-Driving Taxi Systems., , , , , , , and . INFOCOM, page 1619-1628. IEEE, (2022)DeCOM: Decomposed Policy for Constrained Cooperative Multi-Agent Reinforcement Learning., , , , , , and . AAAI, page 10861-10870. AAAI Press, (2023)Enabling Optimal Control Under Demand Elasticity for Electric Vehicle Charging Systems., , , , and . IEEE Trans. Mob. Comput., 21 (3): 955-970 (2022)DeCOM: Decomposed Policy for Constrained Cooperative Multi-Agent Reinforcement Learning., , , , , , , and . CoRR, (2021)