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Comparative study of reactive power control methods for photovoltaic inverters in low-voltage grids

机译:低压电网光伏逆变器无功控制方法的比较研究

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摘要

The increasing installation of photovoltaic panels in low-voltage grids causes an over voltage problem, especially during high production and low consumption periods. Generally the over voltage problem is overcome by implementing reactive power control methods. The advances in networked control systems theory and practice create new scenarios where reactive power control methods can offer additional features and benefits. To explore these new capabilities, this study presents two new reactive power control methods that exploit the networked approach. These two methods are evaluated in a comparative reference framework that also includes the base-line case where no reactive control method is applied, the conventional droop method approach, and a solution based on a near-optimal location of a high power STATCOM derived from one of the new proposed networked methods. The main merit factors used to compare the control methods are the maximum voltage across the distribution grid, the power factor in the point of common coupling, and the total power losses and economic cost of the installation. With these merit factors, the advantages and limitations of the new and existing control methods are revealed and discussed. A useful discussion for selecting the best control solution is also reported.
机译:越来越多的光伏面板安装在低压电网中会引起过压问题,尤其是在高产量和低消耗期间。通常,通过实施无功功率控制方法可以解决过电压问题。网络控制系统理论和实践的进步创造了新的场景,其中无功功率控制方法可以提供其他功能和优势。为了探索这些新功能,本研究提出了两种利用网络方法的新型无功功率控制方法。在比较参考框架中对这两种方法进行了评估,该参考框架还包括不采用无功控制方法的基线情况,常规的下垂方法,以及基于高功率STATCOM的最佳位置的解决方案,该方法源自一个新提出的联网方法。用于比较控制方法的主要优点是:配电网的最大电压,公共耦合点的功率因数以及总功率损耗和安装的经济成本。利用这些优点,揭示并讨论了新的和现有控制方法的优点和局限性。还报告了有关选择最佳控制解决方案的有用讨论。

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