虚拟导纳控制的并联分布式能源聚合模型

Dionysios Moutevelis, J. Roldán-Pérez, M. Prodanović
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引用次数: 0

摘要

近年来,随着配电网中分布式发电源数量的不断增加,其精确和计算效率的建模变得越来越重要。随着旨在支持电网的新型控制器的引入,高效模型的开发变得更加困难和复杂,这些控制器通常模拟无源电路元件的运行。其中一种这样的控制器最近被提出,它模拟了一个导纳的操作,以支持变换器电网连接点的电压。本文建立了一种采用虚拟导纳方法控制并并联的分布式能源的聚合模型。利用控制器与经典电路元件的相似之处,得到了每个变换器的等效电路,包括其控制器部分和连接到主电网的配电线路。然后,应用电路分析技术综合网络中所有并联变流器的聚合模型,简化了它们对网络其余部分的综合影响的评估,减少了计算负担。利用Matlab及其SimPowerSystems工具箱的仿真结果验证了所提模型的准确性。
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Aggregate Model of Parallel Distributed Energy Resources Controlled using Virtual Admittance
The increased number of distributed generation sources in distribution networks in recent years has emphasized the importance of their accurate and computationally efficient modelling. The development of efficient models becomes more difficult and complex with the introduction of novel controllers that aim to support the grid, often emulating the operation of passive circuit elements. One of such controllers has been recently proposed that emulates the operation of an admittance to support the voltage at the point of the converter grid connection. In this paper, an aggregate model of distributed energy resources controlled using virtual admittance approach and connected in parallel is derived. The resemblance of the controller to classical circuit elements is used to obtain an equivalent circuit for each converter including its controller part and the distribution line connecting it to the main grid. Then, circuit analysis techniques are applied to synthesize the aggregate model of all the parallel converters in the network, simplifying the assessment of their combined effect on the rest of the network and reducing the computational burden. Simulation results from Matlab and its SimPowerSystems toolbox are used to validate the accuracy of the proposed model.
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