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Batterya??supercapacitor hybrid energy storage system for wind power suppression based on the turbulence model of wind speed

机译:基于风速湍流模型的风电抑制电池超级电容器混合储能系统

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Based on the turbulence model, the volatility of real-time wind speed is discussed, which is composed of an average component and a fluctuant component. By deriving the probability density function of fluctuant wind speed and investigating the probability density curve, the authors decompose the fluctuant wind power into the steady fluctuation and peak fluctuation. According to the properties of steady fluctuation and peak fluctuation, the authors determine that the energy storage system applied into the real-time wind power fluctuation should be of the performance of high power density, high energy density and long cycle life. Through the comparative analysis on the energy storage performance, the battery and supercapacitor are proved to be suitable for regulating the steady and peak fluctuation, respectively. According to that task assignment, the energy storage performance of a batterya??supercapacitor hybrid system is investigated. Based on the wind power decomposition, this study develops a new capacity configuration method for the hybrid system and gives an example analysis. By that method, the battery and supercapacitor in the hybrid system can be allocated proper energy and power capacity to balance the steady and peak fluctuation, respectively. Consequently, their energy storage merits can be fully utilised.
机译:基于湍流模型,讨论了由平均分量和波动分量组成的实时风速的波动性。通过推导波动风速的概率密度函数并研究概率密度曲线,作者将波动风能分解为稳定波动和峰值波动。根据稳定波动和峰值波动的性质,作者确定应用于实时风电波动的储能系统应具有高功率密度,高能量密度和长循环寿命的性能。通过对储能性能的比较分析,证明电池和超级电容器分别适合调节稳态和峰值波动。根据该任务分配,研究了电池,超级电容器混合系统的储能性能。基于风能分解,本研究为混合动力系统开发了一种新的容量配置方法,并给出了实例分析。通过这种方法,可以为混合动力系统中的电池和超级电容器分配适当的能量和功率,以分别平衡稳态波动和峰值波动。因此,它们的能量存储优点可以被充分利用。

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