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Utilization of Local Flexibility for Charge Management of a Battery Energy Storage System Providing Frequency Containment Reserve

机译:利用局部灵活性的电池储能系统的充电管理,提供频率容纳储备

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This paper estimates the potential to reduce market-based charging and discharging of a battery energy storage system (BESS) that provides frequency containment reserve (FCR) through (a) the utilization of degrees of freedom (DOFs) during reserve provision, and (b) the utilization of the flexibility of local power units (LPUs) at an investigated industrial site. In context of a of a real BESS providing 7 MW of FCR, the potential is quantified based on a simulation using real grid frequency data and real power profiles of LPUs at an industrial site for the year 2016. At the explored site, LPUs identified to provide charge management of the BESS include wind turbines (WT), a combined heat and power plant (CHPP), and power consumption by the fans of a heating, ventilation and air conditioning (HVAC) system. Results indicate that the energy charged and discharged through market-based transactions can be reduced by 56% and 66% respectively; however, the majority of these reductions are caused by the intelligent use of DOFs. Savings by using the flexibility of the mentioned LPUs can be attributed largely to the flexible operation of the HVAC system due to its highest availability and potential to substitute market-based charge events of the BESS.
机译:本文估计,减少电池储能系统(BESS)的基于市场的充电和放电,该电池能量存储系统(BESS)通过(a)在储备提供期间利用自由度(DOF)和(b )利用局部电力单元(LPU)在调查的工业部位的灵活性。在一个Real BESS提供7兆瓦的FCR的上下文中,基于使用2016年的工业站点的实际网格频率数据和LPU的实际电源配置的模拟来量化潜力。在探索的网站上,LPU被确定为提供BESS的充电管理包括风力涡轮机(WT),组合的热量和电厂(CHPP),以及由加热,通风和空调(HVAC)系统的风扇的功耗。结果表明,通过基于市场的交易所带来和排放的能源分别降低了56%和66%;然而,这些减少的大多数是由智能使用的DOF引起的。通过使用所提到的LPU的灵活性的节省可以归因于HVAC系统的灵活运行,因为它的可用性最高和替代BESS的基于市场的充电事件的潜力。

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