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Demand response can to be used in order to reduce energy consumption or, in an economic standpoint, to avoid the need of more expensive energy resources. The present paper proposes a methodology that makes possible to compare the modeling of distinct demand response programs by having different consumer remuneration approaches. The methodology, which is developed in the scope of a Virtual Power Players...
The use of distributed generation and demand response programs in smart grids implies management and integration of these resources when they are interconnected with the main power system. In the present paper, it is defined a methodology that can be used by the Virtual Power Player in order to aggregate and schedule the resources. The aggregated producers and consumers are optimally managed, making...
The use of demand response programs brings several advantages to the power systems operators, to the consumers, as well as to the proper functioning of the whole electrical power system. The present paper proposes a methodology based on the use of five types of demand response programs (Steps, Quadratic, Constant, Linear and Elasticity). These programs corresponds to distinct approaches to model the...
The implementation of competitive electricity markets has changed the consumers' and distributed generation position power systems operation. The use of distributed generation and the participation in demand response programs, namely in smart grids, bring several advantages for consumers, aggregators, and system operators. The present paper proposes a remuneration structure for aggregated distributed...
The positioning of the consumers in the power systems operation has been changed in the recent years, namely due to the implementation of competitive electricity markets. Demand response is an opportunity for the consumers' participation in electricity markets. Smart grids can give an important support for the integration of demand response. The methodology proposed in the present paper aims to create...
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