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Demand Response Application for the Reduction of System Heat Rate in a Small Isolated Power System with Significant Short Term Demand Variation

机译:需求响应在短期需求变化显着的小型隔离电力系统中降低系统热量的应用

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摘要

A demand response (DR) application for improving a power system's heat rate is analysed and simulated. It is proposed that the short cyclical high amplitude load of the in situ arc furnaces be attenuated by the dynamic curtailment of selected grouped commercial air conditioning (AC) loads. A dynamic electrical demand model for the aggregate electrical demand of large, diverse population of air-conditioned buildings is formulated and analysed. For a fictitious test population of air conditioned buildings, the developed model is employed to demonstrate the possible effect on the system demand profile that could be realized by the proposed DR strategy. Electrical energy production simulations are performed to quantify the improvement in average system heat rate and thus the reduction in energy production cost that would be achieved by the strategy.
机译:分析和模拟了用于提高电力系统的热效率的需求响应(DR)应用程序。建议通过动态限制选定的分组商用空调(AC)负载来减弱原位电弧炉的短周期高振幅负载。建立并分析了针对大量不同类型的空调建筑物的总电力需求的动态电力需求模型。对于空调建筑物的虚拟测试人口,采用开发的模型演示了对所提出的灾难恢复策略可能实现的系统需求状况的可能影响。执行电能生产模拟以量化平均系统热量率的提高,从而量化该策略将实现的能源生产成本的降低。

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