The increasing trend in adopting electric vehicles (EVs) will significantly impact the residential electricity demand, which results in an increased risk of transformer overload in the distribution grid. To mitigate such risks, there are urgent needs to develop effective EV charging controllers. Currently, the majority of the EV charge controllers are based on a centralized approach for managing individual EVs or a group of EVs. In this paper, we introduce a decentralized Multi-agent Reinforcement Learning (MARL) charging framework that prioritizes the preservation of privacy for EV owners. We employ the Centralized Training Decentralized Execution-Deep Deterministic Policy Gradient (CTDE-DDPG) scheme, which provides valuable information to...
This paper presents a game theoretic decentralized electric vehicle charging schedule for minimizing...
Demand response (DR) becomes critical to manage the charging load of a growing electric vehicle (EV)...
Demand response (DR) becomes critical to manage the charging load of a growing electric vehicle (EV)...
The rapid development of electric vehicle (EV) technology and the consequent charging demand have br...
The deployment of renewable energy in power systems may raise serious voltage instabilities. Electri...
An electric vehicle charging station (EVCS) infrastructure is the backbone of transportation electri...
With the recent advances in mobile energy storage technologies, electric vehicles (EVs) have become ...
This study proposes a novel multi-agent method for electric vehicle (EV) owners who will take part i...
Advancements in technology and awareness of energy conservation and environmental protection have in...
EVA Deliverable No. 4.1 - Advanced charge-scheduling algorithms for EVs and EVAs and forecastingElec...
This paper addresses the problem of optimizing charging/discharging schedules of electric vehicles (...
Residential consumers have become active participants in the power distribution network after being ...
EVA Deliverable No. 4.1 - Advanced charge-scheduling algorithms for EVs and EVAs and forecastingElec...
EVA Deliverable No. 4.1 - Advanced charge-scheduling algorithms for EVs and EVAs and forecastingElec...
Electric vehicles (EVs) play critical roles in autonomous mobility-on-demand (AMoD) systems, but the...
This paper presents a game theoretic decentralized electric vehicle charging schedule for minimizing...
Demand response (DR) becomes critical to manage the charging load of a growing electric vehicle (EV)...
Demand response (DR) becomes critical to manage the charging load of a growing electric vehicle (EV)...
The rapid development of electric vehicle (EV) technology and the consequent charging demand have br...
The deployment of renewable energy in power systems may raise serious voltage instabilities. Electri...
An electric vehicle charging station (EVCS) infrastructure is the backbone of transportation electri...
With the recent advances in mobile energy storage technologies, electric vehicles (EVs) have become ...
This study proposes a novel multi-agent method for electric vehicle (EV) owners who will take part i...
Advancements in technology and awareness of energy conservation and environmental protection have in...
EVA Deliverable No. 4.1 - Advanced charge-scheduling algorithms for EVs and EVAs and forecastingElec...
This paper addresses the problem of optimizing charging/discharging schedules of electric vehicles (...
Residential consumers have become active participants in the power distribution network after being ...
EVA Deliverable No. 4.1 - Advanced charge-scheduling algorithms for EVs and EVAs and forecastingElec...
EVA Deliverable No. 4.1 - Advanced charge-scheduling algorithms for EVs and EVAs and forecastingElec...
Electric vehicles (EVs) play critical roles in autonomous mobility-on-demand (AMoD) systems, but the...
This paper presents a game theoretic decentralized electric vehicle charging schedule for minimizing...
Demand response (DR) becomes critical to manage the charging load of a growing electric vehicle (EV)...
Demand response (DR) becomes critical to manage the charging load of a growing electric vehicle (EV)...