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Dynamic characterization of power converters: Methods and actuators

机译:功率转换器的动态特性:方法和执行器

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The availability of methods and devices to support the implementation of the Smart Grid represents the real key point to design modern power networks, both for large size and for local distribution systems (Microgrids). Efficient management of energy flows and the exploitation of the renewable energy sources can be carried out using smart power electronic interfaces. The interaction of multiple power converters among sub-grids or grids and distribution nodes can give rise to not trivial stability issues. The experimental dynamic characterization of power converters represent a critical issue in micro power systems analysis. It allows to evaluate not only performances of power circuits in terms of bandwidth, transient response, etc, but also their dynamic influence on the whole system. Techniques for loop gain measurements are well established and usually adopted in test procedures. Not so for the experimental characterization of input and output closed loop transfer functions, which imply the use of auxiliary circuitry to inject small signals upon the steady state values in high voltage or with high output current. The paper discusses different approaches to dynamic measurements and proposes some actuators for signal injection. Experimental results are provided.
机译:支持智能电网实施的方法和设备的可用性代表了设计适用于大型电网和本地配电系统(微电网)的现代电力网络的真正关键点。能源流的有效管理和可再生能源的开发可以使用智能电力电子接口进行。子电网或电网与配电节点之间的多个功率转换器的交互作用不会引起微不足道的稳定性问题。功率转换器的实验动态特性代表了微功率系统分析中的关键问题。它不仅可以评估功率电路在带宽,瞬态响应等方面的性能,还可以评估其对整个系统的动态影响。环路增益测量技术已经很好地建立,并且通常在测试过程中采用。输入和输出闭环传递函数的实验特性并非如此,这意味着使用辅助电路在高压或高输出电流下的稳态值上注入小信号。本文讨论了动态测量的不同方法,并提出了一些用于信号注入的执行器。提供了实验结果。

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