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Investigation of Carrier Demand Response Uncertainty on Energy Flow of Renewable-Based Integrated Electricity–Gas–Heat Systems

机译:基于可再生能源的电-气-热系统的运输商需求响应不确定性研究

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Since there are heavy interdependencies among the electrical, heat, and gas systems to supply various load types worldwide, operation of multi-energy carrier (MEC) systems faces critical challenges. Moreover, any uncertainty rising in one carrier would directly influence the energy flow and the secure operation of the whole MEC system. This issue intensifies when an MEC system is integrated with industrial energy carrier demand response (ECDR) consumers and renewable energy sources (RESs). Large industrial ECDR consumers can increase the system uncertainty by randomly participating in the demand response programs and utilizing various carriers. Accordingly, this paper presents a powerful probabilistic tool named 2m + 1 point estimate strategy for energy flow analysis of an integrated MEC system considering ECDR, RES, and various load types uncertainties to control the risks associated with the uncertainties. In addition, a new decomposition technique is presented to accelerate the energy flow solving of the integrated MEC systems. This technique has been promoted by adding a novel noniterative method named holomorphic embedding and the less-computational graph methods for solving the energy flow of the MEC. The proposed probabilistic energy flow is tested on an integrated MEC system employing various incentives for industrial ECDR consumers.
机译:由于电气,热力和燃气系统之间存在严重的相互依存关系,无法为全球提供各种负载类型,因此多能量载波(MEC)系统的运行面临着严峻的挑战。而且,在一个载波中的任何不确定性上升都将直接影响整个MEC系统的能量流和安全运行。当MEC系统与工业能源运营商需求响应(ECDR)消费者和可再生能源(RES)集成在一起时,此问题会加剧。大型工业ECDR消费者可以通过随机参与需求响应程序并利用各种运营商来增加系统不确定性。因此,本文提出了一种功能强大的概率工具,该工具用于综合MEC系统的能量流分析,称为2m +1点估计策略,该方法考虑了ECDR,RES和各种负载类型的不确定性,以控制与不确定性相关的风险。另外,提出了一种新的分解技术来加速集成MEC系统的能量流求解。通过添加一种新的称为全同性嵌入的非迭代方法和用于解决MEC能量流的计算量较小的图形方法,促进了该技术的发展。建议的概率能量流在集成MEC系统上进行了测试,该系统采用了针对工业ECDR消费者的各种激励措施。

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