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DFT-Based Sizing of Battery Storage Devices to Determine Day-Ahead Minimum Variability Injection Dispatch With Renewable Energy Resources

机译:基于DFT的电池存储设备的大小确定可再生能源的日间最小变化注入调度

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摘要

Renewable energy (RE) resources are non-dispatchable due to their intermittent nature, and battery storage devices (BSDs) play an important role to overcome their inherent variability. Therefore, for optimal operability, BSDs must be appropriately sized. Historical RE generation data can be used for sizing, with the objective to minimize the annualized planning cost. Application of high and low pass filters about a given cut-off frequency on the frequency spectrum of the historical generation data, calculated using discrete Fourier transform approach, segregate the fast and slowly varying components. The proposed methodology is based on${3} {sigma }$principle and will ensure minimum injection of RE-generation variability into the grid for day-ahead scheduling with both fast and slowly varying components. The analysis shows that the batteries with the minimum unit capacity cost to throughput ratio provide minimum annualized planning cost for both slow and fast varying components. Determination of sizing of BSDs for a given cut-off frequency is numerically “costly” and to obtain the optimal cut-off frequency, a derivative-free mode-pursuing sampling method is applied. Exponential reduction in the daily injection of variability with increasing statistical significance in sizing is observed. Impact of unit-capacity cost to throughput-ratio on the sizing of BSDs is also studied.
机译:可再生能源(RE)由于其间歇性而无法分配,电池存储设备(BSD)在克服其固有可变性方面发挥着重要作用。因此,为了获得最佳的可操作性,必须适当调整BSD的大小。历史RE生成数据可用于确定规模,目的是使年度计划成本最小化。在历史生成数据的频谱上,使用给定的截止频率的高通和低通滤波器的应用是使用离散傅立叶变换方法计算的,它将快速变化和缓慢变化的分量隔离开来。提议的方法基于 n $ {3} { sigma} $ n原则,并会确保最少注入RE代的可变性,用于具有快速和缓慢变化组件的提前日调度。分析表明,具有最小单位容量成本与吞吐率的电池为慢速和快速变化的组件提供了最小的年度计划成本。在给定的截止频率下确定BSD尺寸的决定在数值上是“昂贵的”,并且为了获得最佳的截止频率,可以采用无导数的模式追求采样方法。观察到每日注射的可变性呈指数下降,而上浆的统计显着性增加。还研究了单位容量成本对吞吐量比率对BSD大小的影响。

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