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Online Parametric Identification of Power Impedances to Improve Stability and Accuracy of Power Hardware-in-the-Loop Simulations

机译:功率阻抗的在线参数识别,可提高功率硬件在环仿真的稳定性和准确性

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摘要

This paper presents the wideband system identification (WSI) technique, i.e., an online method to identify power impedances over a wide frequency range from which the corresponding parametric impedance can be calculated online as well. The WSI technique exploits an existing custom 25-kW power electronic converter on the top of its power conversion function, which serves as power amplifier of an existing power hardware-in-the-loop (PHiL) simulation setup. The PHiL simulation technique allows connecting a real device under test (DUT) with the real-time simulated rest of system (ROS) at power level. An interface algorithm (IA) on simulation side and a power amplifier (the 25-kW power electronic converter) connect ROS and DUT. This paper shows the impact of the uncertainties in the WSI chain on the accuracy of the impedance identification and highlights how the WSI technique can be combined with the damping impedance method IA to improve both accuracy and stability of the PHiL test bench. The application of the method is illustrated for the scenario of a PHiL test of a dc microgrid with a passive load.
机译:本文介绍了宽带系统识别(WSI)技术,即一种在线方法,可以在很宽的频率范围内识别功率阻抗,从中也可以在线计算相应的参数阻抗。 WSI技术在其功率转换功能之上利用了现有的定制25 kW功率电子转换器,该转换器用作现有功率硬件在环(PHiL)仿真设置的功率放大器。 PHiL仿真技术允许在功率水平下将真实的被测设备(DUT)与实时仿真的系统其余部分(ROS)连接起来。仿真侧的接口算法(IA)和功率放大器(25 kW功率电子转换器)连接ROS和DUT。本文展示了WSI链中不确定性对阻抗识别精度的影响,并重点介绍了WSI技术如何与阻尼阻抗方法IA相结合,以提高PHiL测试台的准确性和稳定性。说明了该方法在无源负载的直流微电网的PHiL测试中的应用。

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