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Influence of Load Peak Shaving on Battery System Capacity in an Islanded Building Microgrid

机译:负荷峰值剃须对岛屿化微电池电池系统容量的影响

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In this paper, building microgrid is modelled in the hardware in loop software Typhoon HIL. Microgrid consists of 30 kW wind turbine, 70 kWp photovoltaic system, building load and battery system. Energy management system is integrated into software model and simulations of the influence of the active load peak shaving technique on battery system capacity are conducted. In each case daily active power load peak is reduced by 1 % and battery system capacity is calculated. Every simulation is executed for the period of one week. Results show that battery system capacity is reducing with active power load peak shaving increase but not in a linear way like it is expected because of the properties of the microgrid model.
机译:在本文中,建立MicroGrid在循环软件台风HIL中的硬件中建模。 MicroGrid由30 kW风力涡轮机,70 kWp光伏系统,建筑载荷和电池系统组成。能源管理系统集成到软件模型中,并进行了主动负载峰值剃须技术对电池系统容量的影响。在每种情况下,每日有效功率负载峰值减少1%,计算电池系统容量。每个模拟都在一周的时间内执行。结果表明,由于微电网模型的特性,电池系统容量通过主动功率负载峰值剃须增加而导致增加,但由于微电网模型的性能,因此不采用线性方式。

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