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From Demand Response in Smart Grid Toward Integrated Demand Response in Smart Energy Hub

机译:从智能电网的需求响应到智能能源中心的综合需求响应

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The proliferation of technologies such as combine heat and power systems has accelerated the integration of energy resources in energy hubs. Besides, the advances in smart grid technologies motivate the electricity utility companies toward developing demand response (DR) programs to influence the electricity usage behavior of the customers. In this paper, we modify the conventional DR programs in smart grid to develop an integrated DR (IDR) program for multiple energy carriers fed into an energy hub in smart grid, namely a smart energy (S. E.) hub. In our model, the IDR program is formulated for the electricity and natural gas networks. The interaction among the S. E. hubs is modeled as an ordinal potential game with unique Nash equilibrium. Besides, a distributed algorithm is developed to determine the equilibrium. Simulation results show that in addition to load shifting, the customers in the S. E. hubs can participate in the IDR program by switching the energy resources (e.g., from the electricity to the natural gas) during the peak hours. Moreover, the IDR program can increase the S. E. hubs’ daily payoff and the utility companies’ daily profit.
机译:热电联产等技术的激增加速了能源枢纽中能源资源的整合。此外,智能电网技术的进步促使电力公司制定需求响应(DR)计划以影响客户的用电行为。在本文中,我们修改了智能电网中的常规DR程序,以开发一种集成的DR(IDR)程序,用于将多个能量载体馈入智能电网中的能源枢纽,即智能能源(S.E.)枢纽。在我们的模型中,为电力和天然气网络制定了IDR计划。东南枢纽之间的相互作用被建模为具有唯一纳什均衡的序数潜在博弈。此外,开发了一种分布式算法来确定平衡。仿真结果表明,除负载转移外,S。E.集线器的客户还可以通过在高峰时段切换能源(例如,从电力到天然气)来参与IDR计划。而且,IDR计划可以增加S.E. Hub的每日收益和公用事业公司的每日利润。

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