基于混合潮流计算的电力系统解耦分析

P. Wirasanti, E. Ortjohann, S. Jaloudi, D. Morton
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引用次数: 9

摘要

大量新的分散式能源转换系统(ECSs)与可再生能源(RESs)相结合,最近已被纳入传统电网,以建立可持续的能源供应系统。这是未来智能电网面临的主要挑战之一。因此,目前有很多关于网格集成的研究,如聚类概念。通过聚类的概念,可以将分布式发电机组组成一个小群,建立一个超前的控制功能,使这个小群像一个虚拟电厂一样运行。因此,网格整合可以很容易地完成。然而,由于新电网的加入,其动态特性的波动会引起电力系统的不稳定,如电压分布可能暂时脱离额定标称状态。为了避免不稳定的情况,必须对连接或解耦位置之间的潮流等基本描述进行澄清和分析。在一般分析中,电力系统分析需要在新电网与现有电网连接时重新创建模型结构。这增加了电力系统分析的复杂性。因此,本文引入了解耦电力系统分析方法,该方法可以在每个电网上单独进行分析,而无需在电力系统结构发生变化时通过添加新电网重新建立模型。为了验证所提方法的有效性,给出了仿真实例,结果表明所提方法可以作为通用的分析方法。
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Decoupling power systems analysis using hybrid load flow calculation
A large number of new and decentralized energy conversion systems (ECSs) in combination with renewable energy sources (RESs) have recently been integrated into the conventional grid to build up sustainable energy supply systems. This is one of main challenge of future smart grids. Thus, currently there are plenty researches focusing on the grid integration such as clustering concept. By clustering concept, it has a possibility to form the distributed generation (DG) units in a small group, which can establish an advance control function in order to make this small group to behave like a virtual power plant. Therefore, the grid integration can be completed in an easily way. However by adding the new grids, the fluctuation of dynamic behavior can cause the unstable power systems, for example, the voltage profile can temporally be out of the nominal rated condition. To avoid the unstable condition, the basic description such as the power flow between connected- or decoupling positions must be clarified and analyzed. In general analysis, the power system analysis needs to recreate the model structure when the new grid is joining the existing grids. This results in an increased complexity of power system analysis. Therefore, this paper introduces the decoupling power system analysis, which can analyze separately on each grid and no need to recreate new model when power systems structure is changed by adding the new grid. To validate the proposed method, the simulation case studies are provided and the results prove that the proposed method can be utilized as the general analysis method.
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