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Stability and accuracy evaluation of a power hardware in the loop (PHIL) interface with a photovoltaic micro-inverter

机译:与光伏微逆变器的环路(PHIL)接口中的电源硬件的稳定性和准确性评估

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Stability and accuracy of PHIL simulation depends upon the characteristics of the interface between the RTS and the hardware device under test. Even when stable PHIL is achieved, the non-idealities in the PHIL interface introduces inaccuracies in the simulation results. Software models that include representation of the PHIL interface provide a method to evaluate the stability and accuracy of a PHIL interface. In most instances the required parameters and circuit topology of the power devices that are to be tested are unavailable, thus making it difficult to prepare the required software models. This paper will discuss the challenges of evaluating the stability and accuracy of a PHIL simulation with a grid-connected photovoltaic micro-inverter whose parameters and converter topology are unknown.
机译:PHIL仿真的稳定性和准确性取决于RTS与被测硬件设备之间接口的特性。即使实现了稳定的PHIL,PHIL界面中的非理想性也会在仿真结果中引入误差。包含PHIL接口表示形式的软件模型提供了一种评估PHIL接口的稳定性和准确性的方法。在大多数情况下,要测试的功率设备所需的参数和电路拓扑不可用,因此很难准备所需的软件模型。本文将讨论用参数和转换器拓扑未知的并网光伏微型逆变器评估PHIL仿真的稳定性和准确性所面临的挑战。

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