We consider a set of users served by a single load-serving entity (LSE). The LSE procures capacity a day ahead. When random renewable energy is realized at delivery time, it manages user load through real-time demand response and purchases balancing power on the spot market to meet the aggregate demand. Hence, optimal supply procurement by the LSE and the consumption decisions by the users must be coordinated over two timescales, a day ahead and in real time, in the presence of supply uncertainty. Moreover, they must be computed jointly by the LSE and the users since the necessary information is distributed among them. In this chapter, we present a simple yet versatile user model and formulate the problem as a dynamic program that maximizes...
This paper optimizes the price-based demand response of a large customer in a power system with stoc...
Recent years have witnessed a growing trend in the participation of renewable energy on the generati...
The uncertain and non-dispatchable nature of renewable energy sources renders Demand Response (DR) a...
We consider a set of users served by a single load-serving entity (LSE). The LSE procures capacity a...
Abstract—We consider a set of users served by a single load-serving entity (LSE) in the electricity ...
We consider a set of users served by a single load serving entity (LSE) in the electricity grid. The...
Abstract — We propose a simple model that integrates two-period electricity markets, uncertainty in ...
We propose a simple model that integrates two-period electricity markets, uncertainty in renewable g...
Abstract — We propose a simple model that integrates two-period electricity markets, uncertainty in ...
We present a sample of problems in demand side management in future power systems and illustrate ho...
Abstract — Demand Response (DR) programs encourage consumers to adjust their power consumption in re...
This paper addresses the optimal decision problem of a distributed energy resources (DER) aggregator...
36 pagesInternational audienceDespite the success of demand response programs in retail electricity ...
Abstract—A demand response (DR) problem is considered entailing a set of devices/subscribers, whose ...
Thesis (Ph.D.)--University of Washington, 2018The new perspective of looking at power system operati...
This paper optimizes the price-based demand response of a large customer in a power system with stoc...
Recent years have witnessed a growing trend in the participation of renewable energy on the generati...
The uncertain and non-dispatchable nature of renewable energy sources renders Demand Response (DR) a...
We consider a set of users served by a single load-serving entity (LSE). The LSE procures capacity a...
Abstract—We consider a set of users served by a single load-serving entity (LSE) in the electricity ...
We consider a set of users served by a single load serving entity (LSE) in the electricity grid. The...
Abstract — We propose a simple model that integrates two-period electricity markets, uncertainty in ...
We propose a simple model that integrates two-period electricity markets, uncertainty in renewable g...
Abstract — We propose a simple model that integrates two-period electricity markets, uncertainty in ...
We present a sample of problems in demand side management in future power systems and illustrate ho...
Abstract — Demand Response (DR) programs encourage consumers to adjust their power consumption in re...
This paper addresses the optimal decision problem of a distributed energy resources (DER) aggregator...
36 pagesInternational audienceDespite the success of demand response programs in retail electricity ...
Abstract—A demand response (DR) problem is considered entailing a set of devices/subscribers, whose ...
Thesis (Ph.D.)--University of Washington, 2018The new perspective of looking at power system operati...
This paper optimizes the price-based demand response of a large customer in a power system with stoc...
Recent years have witnessed a growing trend in the participation of renewable energy on the generati...
The uncertain and non-dispatchable nature of renewable energy sources renders Demand Response (DR) a...