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Multi - Party Energy Management of Microgrid with Heat and Electricity Coupled Demand Response

机译:微党的微耕地与热电电耦合需求响应

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Combined heat and power (CHP) based Microgrids (MG) are quite popular. They can generate electricity based on electric or thermal demand. A framework of multi -party energy management is proposed in this paper with heat and electricity demand for the CHP -MG. Paper also delves on energy management of MG provided by CHP and photovoltaic (PV) prosumers. A model of Microgrid Operator (MGO) is developed to determine the operational profit of CHP system where MGO acts as a leader and prosumers are the followers. The main objective of MGO is economic operation of MG or to minimize the net cost of generation from Distributed energy resources and purchasing energy from the grid. It is established by simulation that the CHP system operating in hybrid mode by selecting following electric load (FEL) mode and following thermal load (FTL) mode dynamically the most economic operation of CHP is achieved. A dealing process between MGO and prosumers is also modeled. Lastly, a case study with CHP -MG and 6 building users are presented to verify the effectiveness of the model and to show the economic benefit of having the MGO along with the prosumers in a MG.
机译:组合的热量和功率(CHP)的微电网(MG)非常受欢迎。它们可以基于电气或热需求产生电力。本文提出了一种多颗粒能源管理的框架,对CHP-MG进行了热电路需求。纸张还揭示了CHP和光伏(PV)制度的MG的能量管理。开发了一种微电网运营商(MGO)模型,以确定MGO作为领导者和制度的垃圾系统的运营利润是追随者。 MgO的主要目的是MG的经济运行,或者最大限度地减少从分布能源资源发电和从网格中购买能源的净成本。通过模拟通过选择在混合模式下通过选择以下电负载(FEL)模式和动态的热负荷(FTL)模式进行混合模式的CHP系统实现了CHP最经济的操作。也建模了MgO和Prosumers之间的交易过程。最后,提出了用CHP-MG和6个建立用户进行案例研究以验证模型的有效性,并表明将MGO与MG中的法学展示的经济效益。

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