基于光伏功率平滑方法的超级电容器尺寸比较研究

Stella Dimitra Tragianni, K. Oureilidis, C. Demoulias
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引用次数: 8

摘要

在可再生能源普及率高的电网中,并网光伏电源的功率波动是造成各种电能质量问题的主要原因。对于孤立电网或孤岛微电网,电压闪烁或频率偏差等问题可能变得更加严重。为了解决这些问题,人们提出了各种解决方案,主要是通过增加存储设备来平滑光伏输出功率。在使用混合光伏/储能DC/AC变换器的情况下,由于云层的通过,光伏输出功率的任何突变都可以通过控制储能系统的充放电来吸收。因此,提出了一种基于超级电容器的快速响应和提高功率密度的存储系统。本文比较了光伏安装中两种不同的“功率平滑”方法,并考虑了普通直流链路中的超级电容器。第一种方法是基于移动平均算法的功率平滑,第二种方法是控制注入电网的功率的变化率。主要目标是通过对真实辐射测量进行模拟测试,为两种控制策略提供比较结果。还对储能的尺寸进行了比较研究,基于创建的实际辐照曲线,以记录安装的实际能量需求,并防止超级电容器的尺寸过大。结果表明,根据所实现的功率平滑方法的不同,存储大小有显著差异,因此仔细考虑电网要求是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supercapacitor sizing based on comparative study of PV power smoothing methods
Power volatility of grid-tied photovoltaic (PV) sources can be responsible for various power quality issues in utility grids with high renewable sources penetration. Problems such as voltage flickering or frequency deviations can become more severe for isolated grids or islanded microgrids. Various solutions have been proposed to address these issues, mainly based on smoothing the PV output power by adding a storage device. In case of utilizing a hybrid PV/storage DC/AC converter, any abrupt changes in the power output of the PV due to cloud passing are absorbed by controlling the charge and discharge of the storage system. Therefore a storage system based on supercapacitors with quick time response and increased power density is proposed. This paper compares two different “power smoothing” methodologies in a PV installation, considering a supercapacitor in the common DC-link. The first power smoothing method is based on the moving average algorithm, while the second on controlling the rate of change of the power injected to the grid. The main target focuses on providing comparative results for both control strategies, by implementing simulation tests with real irradiation measurements. A comparative study is also conducted for the sizing of the energy storage, based on the real irradiation profile created to remark the real energy needs of the installation and prevent over-sizing of the supercapacitor. The results show a significant difference in storage size, depending on the power smoothing method implemented, thus a careful consideration of the grid requirements is necessary.
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