This paper presents a multi-timescale control strategy to deploy electric vehicle (EV) demand flexibility for simultaneously providing power balancing, grid congestion management, and economic benefits to participating actors. First, an EV charging problem is investigated from consumer, aggregator, and distribution system operator’s perspectives. A hierarchical control architecture (HCA) comprising scheduling, coordinative, and adaptive layers is then designed to realize their coordinative goal. This is realized by integrating multi-time scale controls that work from a day-ahead scheduling up to real-time adaptive control. The performance of the developed method is investigated with high EV penetration in a typical residential distribution ...
© 1967-2012 IEEE. As electric vehicles (EVs) are connected to the distribution power system, EV owne...
ABSTRACTThe charging of electric vehicles (EVs) impacts the distribution grid, and its cost depends ...
Abstract Growing penetration of Electric Vehicles (EV) and Distributed Generation (DG) is driving sh...
This paper presents a multi-timescale control strategy to deploy electric vehicle (EV) demand flexib...
This paper presents a multi-timescale control strategy to deploy electric vehicle (EV) demand flexib...
In this paper, the charging loads of electric vehicles were controlled to avoid their impact on dist...
In this paper, the charging loads of electric vehicles were controlled to avoid their impact on dist...
In this paper, the charging loads of electric vehicles were controlled to avoid their impact on dist...
ABSTRACT Electric vehicles (EVs) are expected to soon become widespread in the distribution network....
Abstract—At high penetrations, uncontrolled electric vehicle (EV) charging has the potential to caus...
In this paper, we consider the balancing problem in a hierarchical market-based structure for smart ...
In this paper, we consider the balancing problem in a hierarchical market-based structure for smart ...
In this paper, we consider the balancing problem in a hierarchical market-based structure for smart ...
In this paper, we consider the balancing problem in a hierarchical market-based structure for smart ...
A potential breakthrough of the electrification of the vehicle fleet will incur a steep rise in the ...
© 1967-2012 IEEE. As electric vehicles (EVs) are connected to the distribution power system, EV owne...
ABSTRACTThe charging of electric vehicles (EVs) impacts the distribution grid, and its cost depends ...
Abstract Growing penetration of Electric Vehicles (EV) and Distributed Generation (DG) is driving sh...
This paper presents a multi-timescale control strategy to deploy electric vehicle (EV) demand flexib...
This paper presents a multi-timescale control strategy to deploy electric vehicle (EV) demand flexib...
In this paper, the charging loads of electric vehicles were controlled to avoid their impact on dist...
In this paper, the charging loads of electric vehicles were controlled to avoid their impact on dist...
In this paper, the charging loads of electric vehicles were controlled to avoid their impact on dist...
ABSTRACT Electric vehicles (EVs) are expected to soon become widespread in the distribution network....
Abstract—At high penetrations, uncontrolled electric vehicle (EV) charging has the potential to caus...
In this paper, we consider the balancing problem in a hierarchical market-based structure for smart ...
In this paper, we consider the balancing problem in a hierarchical market-based structure for smart ...
In this paper, we consider the balancing problem in a hierarchical market-based structure for smart ...
In this paper, we consider the balancing problem in a hierarchical market-based structure for smart ...
A potential breakthrough of the electrification of the vehicle fleet will incur a steep rise in the ...
© 1967-2012 IEEE. As electric vehicles (EVs) are connected to the distribution power system, EV owne...
ABSTRACTThe charging of electric vehicles (EVs) impacts the distribution grid, and its cost depends ...
Abstract Growing penetration of Electric Vehicles (EV) and Distributed Generation (DG) is driving sh...