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Optimal Scheduling of CCHP Based on Comprehensive Demand Response

机译:基于综合需求响应的CCHP优化调度

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In the case of excessive consumption of fossil energy and increasingly serious environmental pollution, the use of renewable energy power generation and gas turbine units to build a multi energy complementary integrated energy system, improve energy efficiency and reduce environmental pollution is the current hot issue. In this paper, the output of wind and solar renewable energy is combined with the Combined cooling, heating and power (CCHP) system of gas turbine. Considering the temperature comfort and power load demand response, a CCHP system based on comprehensive demand response is proposed. The scenario generation method is used to consider the uncertainty of renewable energy output, and the optimal scheduling model is established. The simulation results show that the model can effectively reduce the comprehensive operation cost and has significant economic and social value.
机译:在化石能源的过度消耗和越来越严重的环境污染的情况下,使用可再生能源发电和燃气轮机单元构建多能量互补集成能源系统,提高能源效率,降低环境污染是当前的热门问题。 本文的情况下,风和可再生能源的输出与燃气轮机的组合冷却,加热电量(CCHP)系统相结合。 考虑到温度舒适性和功率负荷需求,提出了一种基于综合需求响应的CCHP系统。 场景生成方法用于考虑可再生能量输出的不确定性,并且建立了最佳调度模型。 仿真结果表明,该模型可有效降低综合运营成本,具有重要的经济和社会价值。

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