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An Energy Management System for Isolated Microgrids With Thermal Energy Resources

机译:具有热能资源的孤立微电网的能量管理系统

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摘要

A novel Energy Management System (EMS) model for an isolated microgrid, integrating thermal energy resources, such as Combined Heat and Power (CHP) units, boilers, Heat Pumps (HPs), and Thermal Storage System (TSS), while considering thermal load models, is proposed in this paper. The developed EMS is tested and validated with a real testbed microgrid located in Bari, Italy, which supplies both electricity and heat to a building at the Politecnico di Bari. The proposed EMS aims to minimize the fuel cost and includes thermal comfort requirements and building models, along with suitable models for CHP units and hot water-based TSS, based on an optimization problem formulated as a Mixed Integer Linear Programming (MILP) problem, which is readily handled with commercial solvers, making the EMS fit for online applications. The proposed EMS is compared with an electrical-only EMS, i.e., a practical EMS that does not include thermal systems, with the simulations carried out for different winter days demonstrating the economic benefits of accounting for thermal system models in a microgrid EMS, resulting in significant savings in the daily fuel cost.
机译:用于隔离微电网的新型能量管理系统(EMS)模型,集成热能资源,如组合热电(CHP)单元,锅炉,热泵(HPS)和热存储系统(TSS),同时考虑热负荷模型,在本文中提出。开发的EMS经过测试和验证,该实际测试平面Microgrid位于意大利Bari的真实测试的MicroGrid,它将电力和热量提供给Politecnico di Bari的建筑物。提议的EMS旨在最大限度地减少燃料成本,包括热舒适性要求和建筑模型,以及适用于CHP单位和热水基TS的型号,基于配制成混合整数线性编程(MILP)问题随时处理商业求解器,使EMS适合在线应用程序。将所提出的EMS与仅电气的EMS进行比较,即不包括热系统的实用EMS,为不同的冬日进行了仿真,展示了核算MicroGrid EMS中的热系统模型的经济效益,从而导致每日燃料成本的显着节省。

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