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A new dynamic electrical load model for an HVAC chiller for use in demand response applications is presented. The coupling of a building's electrical and thermal characteristics is not adequately captured using existing static models. Therefore a dynamic model is proposed. This allows for more accurate planning of the dispatching of load for demand side response. The model in this paper is derived...
Renewable, natural, and distributed power sources have been adopted in order to reduce consumption of fossil fuels. These new energy sources have fluctuations in the amount of output power, frequency, and voltage. Similar situation arises at the regulation of power flow in-home. Thus, suppression of the fluctuation is required for avoiding disturbance in power grid. In this paper, two types of in-home...
Faced with an uncertain path forward to renewables portfolio standard (RPS) goals and the high cost of energy storage, we believe that deep demand side management must be a central strategy to achieve widespread penetration of renewable energy sources. We examine the variability of wind as a source of renewable, non-dispatchable energy and the loads that can be dispatched to match sources of this...
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