Optimization Scheduling of Integrated Energy System Considering Demand Response and Coupling Degree

Huacan Lv, Yong Wang, Xuetao Dong, Fan Jiang, Chengfu Wang, Zhenwei Zhang
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引用次数: 7

Abstract

Demand response (DR) is an important way for demand side to participate in the flexible interaction of integrated energy system (IES). The complementary relationship among different forms of energy can be used to stimulate the flexibility of IES by co-optimizing at the consumer end, which can fully exploit the user's response ability. In order to quantitatively describe the complementarity between energy sources, the concept of coupling degree is proposed in this paper. Firstly, demand response in IES is put forward to mobilize flexibility on the demand side. Then, the concept of coupling degree is proposed in this paper to realize the quantitative modeling of the impact of energy complementarity on demand response. Therefore, an optimal operation model of IES is established to analyze the flexibility of demand response under different coupling degree. To solve the proposed model, the GAMA/IPOPT solver is used by adopting interior-point method. Finally, a typical test system is established to verify that the proposed method can effectively increase wind power consumption and reduce energy supply and use cost. With the increase of coupling degree, the flexibility of the demand response and the customer satisfaction increase and stop increasing after the inflection point.
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考虑需求响应和耦合度的综合能源系统优化调度
需求响应(DR)是需求侧参与集成能源系统(IES)柔性交互的重要方式。利用不同形式的能源之间的互补关系,通过用户端的协同优化,激发IES的灵活性,充分利用用户的响应能力。为了定量描述能源之间的互补性,本文提出了耦合度的概念。首先,提出IES中的需求响应,以调动需求侧的灵活性。然后,本文提出耦合度的概念,实现能源互补性对需求响应影响的定量建模。为此,建立了IES的最优运行模型,分析了不同耦合度下需求响应的灵活性。为了求解该模型,采用内点法,采用GAMA/IPOPT求解器。最后,建立了一个典型的测试系统,验证了所提出的方法能够有效地提高风电消纳,降低能源供应和使用成本。随着耦合度的增加,需求响应的灵活性和顾客满意度增加,并在拐点后停止增加。
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