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We discuss the evolving role of communication and control for automatic load management in electric distribution systems. We start by reprising a description of the Athens project - one of the earliest deployed examples of automatic load management at consumers enabled by communication signals. We observe that the use of communication for such systems has gone through distinct phases in its evolution...
Demand Response (DR) provides mechanisms and incentives for utilities, business and residential customers to reduce energy use (and costs) during time of peak demand or when system reliability is at risk. DR is considered by CPUC, DOE and FERC as one of high-priority Smart-Grid Functionalities. FERC has developed a national action plan on demand response, recognizing that a more extensive use of demand...
In this paper the effect of demand response (DR) resource utilization in the system operation is analyzed by using an optimization based simultaneous market clearing framework. Two distinct utilization patterns that DR can be involved are reserve supplying by Reserve Supplying Demand Response (RSDR) and providing actual curtailment for demand reduction or peak clipping by Peak Clipping Demand Response...
In a restructured power system, there are many players who benefit from Demand Response (DR). These include the Market Operator (MO), the Transmission System Operator (TSO), Distributors, Retailers, Aggregators, and also consumers. This paper proposes a new concept - Demand Response eXchange (DRX) - in which DR is treated as a virtual resource that can be exchanged between two groups of players, namely...
The effective harnessing of control, communication and computer technologies in the operation of the power system - the key notion behind the Smart Grid concept - can markedly impact the system reliability. The appropriate utilization of intelligent line switching, demand response resources (DRRs), FACTS devices and PMUs is key in the smart grid deployment to bring about improvements in the reliability...
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