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Online measurement of bus impedance of interconnected power electronics systems: Applying orthogonal sequences

机译:互连电力电子系统的总线阻抗在线测量:应用正交序列

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A power-electronics-based DC-distribution system is a complex and extensively interconnected system consisting of multiple power converters. Consequently, a number of issues related to stability arise due to interactions among multiple converter subsystems. Recent studies have presented methods such as passivity-based stability criterion where the stability and other dynamic characteristics of an interconnected system can be effectively analyzed using bus-impedance measurement. Studies have presented online techniques where the bus impedance is obtained by combining together the measurements of input and output impedances of single converters in the system. Since the converters are coupled, the presented techniques require several measurement cycles in order to sequentially measure the individual impedances to be combined to obtain the overall bus impedance. This paper presents a measurement technique based on injection of orthogonal binary sequences. Applying this method, all the impedances in the system can be simultaneously measured during one measurement cycle. Therefore, the overall measurement time of the bus impedance is drastically reduced. Furthermore, the method guarantees that the system dynamics do not change between measurements, and therefore, the computed bus impedance is not distorted. Experimental results are presented and used to demonstrate the effectiveness of the proposed method.
机译:基于功率电子的直流配电系统是一个复杂且广泛互连的系统,由多个功率转换器组成。因此,由于多个转换器子系统之间的相互作用,出现了许多与稳定性有关的问题。最近的研究提出了诸如基于无源性的稳定性标准之类的方法,其中可以使用总线阻抗测量来有效地分析互连系统的稳定性和其他动态特性。研究提出了在线技术,其中通过将系统中单个转换器的输入和输出阻抗的测量值结合在一起来获得总线阻抗。由于转换器是耦合的,因此提出的技术需要几个测量周期,以便顺序地测量要组合的各个阻抗以获得总的总线阻抗。本文提出了一种基于正交二进制序列注入的测量技术。应用此方法,可以在一个测量周期内同时测量系统中的所有阻抗。因此,大大降低了总线阻抗的总测量时间。此外,该方法保证了在测量之间系统动态不会改变,因此,计算出的总线阻抗不会失真。实验结果被提出并用来证明所提方法的有效性。

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