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Singular Perturbation for the Dynamic Modeling of Integrated Energy Systems

机译:集成能源系统动态建模的奇异扰动

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An integrated energy system (IES) represents coordinated operations of constrained natural gas (NG), electric power, and thermal systems in three distinctly different time scales. Microturbines (MTs) are increasingly utilized in IES as suppliers of combined cooling, heating and power (CCHP) units, which optimize the delivery and the usage of interdependent NG, electric power, and thermal energy sectors in a distributed IES. In this paper, a dynamic IES model is proposed based on the singular perturbation theory (SPT), which denotes the dynamic interactions of the three energy systems. The dynamic IES model representing a boundary layer system (BLS) is solved and analyzed in three time-scales. The simulation results demonstrate the validity of the proposed dynamic IES model in three time-scales, highlighting the necessity of incorporating the dynamic characteristics of NG, electric power, and thermal energy in dynamic analyses of distributed IES.
机译:集成能量系统(IE)表示三个明显不同的时间尺度的受约束的天然气(NG),电力和热系统的协调操作。 MicroCurbines(MTS)越来越多地利用IES作为组合冷却,加热和功率(CCHP)单元的供应商,该装置优化了分布式IE中相互依存的NG,电力和热能扇区的输送和使用。本文基于奇异扰动理论(SPT)提出了一种动态IES模型,其表示三个能量系统的动态相互作用。在三个时间尺度中解决并分析了表示边界层系统(BLS)的动态IES模型。仿真结果展示了三个时间尺度中提出的动态IES模型的有效性,突出了在分布式IE的动态分析中结合NG,电力和热能的动态特性的必要性。

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