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首页> 外文期刊>Journal of Energy Storage >Investigations into best cost battery-supercapacitor hybrid energy storage system for a utility scale PV array
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Investigations into best cost battery-supercapacitor hybrid energy storage system for a utility scale PV array

机译:用于公用事业规模光伏阵列的成本最低的电池-超级电容器混合储能系统的研究

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In this paper, a hybrid energy storage system (HESS), combining a battery and a supercapacitor (SC), is studied for dispatching solar power at one hour increments for an entire day for 1 MW grid connected photovoltaic (PV) arrays. HESS relies on PV for charging and not the grid, and hence is immune to fluctuating electricity prices. The battery and SC are intended to supply predetermined constant power, but not to provide ancillary services for the grid operation. To develop a cost-effective energy storage system, a low pass filter (LPF) is used to allocate the power between a battery and a SC. The best cost of the energy storage is calculated based on the time constant of the LPF through extensive simulations. Several rule-based algorithms based on the battery state of charge (SOC) are developed to estimate the grid reference power for each one-hour dispatching period. An economic comparison of using different kinds of the algorithms for estimating the grid reference power are also presented in this study. The objective is to better understand the annual energy storage cost for hourly dispatching solar power. The actual solar data of four different days as a representative of each season recorded at Oak Ridge National Laboratory are used in the simulations. The relationship between the actual PV cell temperature and the ambient temperature in power output calculations are also considered and their effects on energy storage price calculations are presented in this paper.
机译:本文研究了一种混合动力储能系统(HESS),该系统结合了电池和超级电容器(SC),用于1 MW并网光伏(PV)阵列以一小时的增量分配太阳能。 HESS依靠光伏而不是电网进行充电,因此不受电价波动的影响。电池和SC旨在提供预定的恒定功率,但不为电网运行提供辅助服务。为了开发经济高效的储能系统,低通滤波器(LPF)用于在电池和SC之间分配功率。储能的最佳成本是根据LPF的时间常数通过广泛的模拟计算得出的。开发了几种基于电池充电状态(SOC)的基于规则的算法,以估算每个一小时的调度时段的电网参考功率。这项研究还提出了使用不同种类的算法估算电网参考功率的经济比较。目的是更好地了解每小时分派太阳能的年度储能成本。在模拟中使用了橡树岭国家实验室记录的代表每个季节的四个不同天的实际太阳数据。本文还考虑了功率输出计算中光伏电池实际温度与环境温度之间的关系,并介绍了它们对储能价格计算的影响。

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