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A dynamic decision-making method for energy transaction price of CCHP microgrids considering multiple uncertainties

机译:考虑多种不确定性的CCHP微普林电普林能量交易价格的动态决策方法

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摘要

Combined cooling, heating and power microgrid (CCHP microgrid) system, which has the characteristics of clean production and multi-energy comprehensive supply, has attracted great attention. Through the integration of renewable energy, etc., the electricity retailer can form a load service entity (LSE) to provide services. Transactions can be made between CCHP microgrid and LSE. However, how to determine the transaction price between them is still a problem. In addition, both the CCHP microgrid and LSE contain renewable energy with uncertain output, which affects the normal operation of the system. In this paper, we propose a dynamic decision-making method for the energy transaction price considering multiple uncertainties. According to the random output of renewable energy, the uncertainty set is constructed. Furthermore, a robust optimal dispatching model is established. According to the dispatching results, the optimal transaction price is searched by using the salp swarm algorithm (SSA). It can be seen from the simulation results: 1) This price decision method can effectively reduce the operating cost of the system; 2) The LSE acts as an energy exchange center in the entire system; 3) Using robust optimization for energy dispatching can maximize the consumption of renewable energy.
机译:结合冷却,加热和电力电普(CCHP微电网)系统,具有清洁生产和多能量综合供应的特点,引起了极大的关注。通过整合可再生能源等,电力零售商可以形成负载服务实体(LSE)以提供服务。 CCHP Microgrid和LSE之间可以进行事务。但是,如何确定它们之间的交易价格仍然是一个问题。此外,CCHP MicroGrid和LSE都包含具有不确定输出的可再生能量,影响系统的正常运行。在本文中,我们提出了一种考虑多个不确定性的能量交易价格的动态决策方法。根据可再生能源的随机输出,构建不确定性集。此外,建立了稳健的最佳调度模型。根据调度结果,通过使用SALP Swarm算法(SSA)来搜索最佳交易价格。从仿真结果可以看出:1)该价格决策方法可以有效地降低系统的运营成本; 2)LSE作为整个系统中的能量交换中心; 3)利用稳健优化进行能量调度,可以最大限度地提高可再生能源的消耗。

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