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Improve the Stability and the Accuracy of Power Hardware-in-the-Loop Simulation by Selecting Appropriate Interface Algorithms

机译:通过选择适当的接口算法来提高电源硬件在环仿真的稳定性和准确性

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the closed-loop stability and the simulation accuracy are two paramount issues in power Hardware-In-the-Loop simulation in regard to the operational safety and the experiment reliability. In this paper, the stability issue of the Power HIL simulation is first introduced with a simple example. A stability analysis and accuracy estimation method based on the system''s loop transfer function is later given. Five different interface algorithms are described and their respective characteristics with respect to the system stability are compared. Through Matlab simulations and field experiments of two representative Power HIL examples, it is revealed that certain interface algorithms exhibit higher stability and accuracy than the others under the given conditions. A recommendation for selecting appropriate interface algorithms is finally proposed at the end of the paper.
机译:就操作安全性和实验可靠性而言,闭环稳定性和仿真精度是电力硬件在环仿真中的两个首要问题。在本文中,首先通过一个简单的例子介绍了Power HIL仿真的稳定性问题。随后给出了基于系统循环传递函数的稳定性分析和精度估计方法。描述了五种不同的接口算法,并比较了它们在系统稳定性方面的各自特征。通过Matlab仿真和两个有代表性的Power HIL实例的现场实验,我们发现,在给定条件下,某些接口算法表现出更高的稳定性和准确性。最后,在本文的最后提出了选择合适的接口算法的建议。

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