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Generalised single-equation load flow method for unbalanced distribution systems

机译:不平衡配电系统的广义单方程潮流计算方法

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This study presents a generalised single-equation load flow (GSELF) method for the analysis of unbalanced distribution systems. The proposed method is derived from a recently formulation published in the technical literature, which is based on the impedance matrix and nodal currents injections. The major drawback of this type of method, however, is that the impedance matrix must remain constant throughout the process to guarantee efficiency, thus not allowing the modelling of some of the common components present in distribution networks. This proposal introduces a GSELF method which can overcome this limitation and allow the inclusion of distribution transformers and voltage regulators, in different types of connections, without sacrificing accuracy. Models of distribution system devices such as shunt capacitors and distributed generators, as well as three phase lines and various types of loads can be included. The proposed method is then tested with two benchmark IEEE distribution systems. Results show that the proposed method is effective, computationally robust and faster than the forward/backward sweep method.
机译:这项研究提出了一种用于分析不平衡配电系统的广义单方程潮流(GSELF)方法。所提出的方法是基于技术文献中最近发表的公式得出的,该公式基于阻抗矩阵和节点电流注入。但是,这种方法的主要缺点是,在整个过程中,阻抗矩阵必须保持恒定以保证效率,因此不允许对配电网络中某些常见组件进行建模。该建议引入了一种GSELF方法,该方法可以克服此限制,并允许在不牺牲精度的情况下将配电变压器和电压调节器包括在不同类型的连接中。可以包括配电系统设备(例如并联电容器和分布式发电机)的模型,以及三相线路和各种类型的负载。然后用两个基准IEEE分配系统测试该方法。结果表明,与前向/后向扫描方法相比,该方法有效,计算鲁棒且速度更快。

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