ABSTRACT Real-time demand response is essential for handling the uncertainties of renewable generation. Traditionally, demand response has been focused on large industrial and commercial loads, however it is expected that a large number of small residential loads such as air conditioners, dish washers, and electric vehicles will also participate in the coming years. The electricity consumption of these smaller loads, which we call deferrable loads, can be shifted over time, and thus be used (in aggregate) to compensate for the random fluctuations in renewable generation. In this paper, we propose a real-time distributed deferrable load control algorithm to reduce the variance of aggregate load (load minus renewable generation) by shifting t...
Real-time demand response is essential for handling the uncertainties of renewable generation. Tradi...
Abstract—We consider a set of users served by a single load-serving entity (LSE) in the electricity ...
Electric power systems are shifting away from conventional fuel-burning generation and moving toward...
Real-time demand response is essential for handling the uncertainties of renewable generation. Tradi...
Real-time demand response is essential for handling the un-certainties of renewable generation. Trad...
Real-time demand response is essential for handling the uncertainties of renewable generation. Tradi...
In this paper we propose a direct coupling of renewable generation with deferrable demand in order t...
Abstract—In this paper we propose a direct coupling of re-newable generation with deferrable demand ...
Motivated by environmental and energy security concerns, many states and countries have enacted legi...
Increased uptake of variable renewable generation and further electrification of energy demand neces...
Deferrable load control is essential for handling the uncertainties associated with the increasing p...
Abstract—In this paper, we propose a novel optimization-based real-time residential load management ...
Abstract—In this paper, we propose a novel optimization-based real-time residential load management ...
We consider a set of users served by a single load serving entity (LSE) in the electricity grid. The...
With large-scale plans to integrate renewable generation driven mainly by state-level renewable port...
Real-time demand response is essential for handling the uncertainties of renewable generation. Tradi...
Abstract—We consider a set of users served by a single load-serving entity (LSE) in the electricity ...
Electric power systems are shifting away from conventional fuel-burning generation and moving toward...
Real-time demand response is essential for handling the uncertainties of renewable generation. Tradi...
Real-time demand response is essential for handling the un-certainties of renewable generation. Trad...
Real-time demand response is essential for handling the uncertainties of renewable generation. Tradi...
In this paper we propose a direct coupling of renewable generation with deferrable demand in order t...
Abstract—In this paper we propose a direct coupling of re-newable generation with deferrable demand ...
Motivated by environmental and energy security concerns, many states and countries have enacted legi...
Increased uptake of variable renewable generation and further electrification of energy demand neces...
Deferrable load control is essential for handling the uncertainties associated with the increasing p...
Abstract—In this paper, we propose a novel optimization-based real-time residential load management ...
Abstract—In this paper, we propose a novel optimization-based real-time residential load management ...
We consider a set of users served by a single load serving entity (LSE) in the electricity grid. The...
With large-scale plans to integrate renewable generation driven mainly by state-level renewable port...
Real-time demand response is essential for handling the uncertainties of renewable generation. Tradi...
Abstract—We consider a set of users served by a single load-serving entity (LSE) in the electricity ...
Electric power systems are shifting away from conventional fuel-burning generation and moving toward...