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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Dynamic Aggregation Modeling of Grid-Connected Inverters Using Hamilton's-Action-Based Coherent Equivalence
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Dynamic Aggregation Modeling of Grid-Connected Inverters Using Hamilton's-Action-Based Coherent Equivalence

机译:基于汉密尔顿行动相干等效性的并网逆变器动态聚集建模

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The high penetration of renewable energy generation (REG) systems influences the dynamics of power systems. Accurate transient simulations and dynamic models are indispensable for the research on the dynamic behavior of REG systems. A large-scale REG system consisting of numerous grid-connected inverters consumes a large amount of computation time, so a dynamic aggregated model is needed for efficient simulation. The aggregated model established by coherent equivalence fits the detailed model well, and thus it is widely used in the aggregation of large-scale dynamic systems. Presently, the key challenge of the application of the coherent-equivalence method is to identify inverters that have similar dynamic characteristics. The Hamilton principle expressed by Hamilton's action has a simple form and indicates the comprehensive dynamic characteristics of inverters. Thus, this paper proposes a coherent-equivalence method of inverters based on Hamilton's action. The proposed method is applied to a wind farm of 16 permanent magnet synchronous generator-based wind turbines for demonstration. Compared with the existing equivalence method without considering coherency, the proposed method shows advantages in effectiveness and accuracy.
机译:可再生能源发电(REG)系统的高渗透率会影响电力系统的动力。准确的瞬态仿真和动态模型对于研究REG系统的动态行为必不可少。由大量并网逆变器组成的大规模REG系统消耗大量计算时间,因此需要动态的聚合模型来进行有效的仿真。通过相干等效建立的聚合模型非常适合详细模型,因此被广泛用于大型动态系统的聚合。目前,相干等效方法应用的关键挑战是识别具有相似动态特性的逆变器。用汉密尔顿的动作表示的汉密尔顿原理具有简单的形式,表明了逆变器的综合动态特性。因此,本文提出了一种基于汉密尔顿作用的逆变器相干等效方法。将该方法应用于16台永磁同步发电机风力发电机的风场进行演示。与不考虑相干性的现有等效方法相比,该方法具有较高的有效性和准确性。

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