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Extended holomorphic embedded load-flow method and voltage stability assessment of power systems

机译:电力系统的延伸的全旋嵌入式负载法和电压稳定性评估

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摘要

Existing iterative load flow methods provide spurious solution/diverge near maximum loading point. The solution is also affected by the choice of initial condition. A non-iterative method known as holomorphic embedded load-flow method (HELM) overcomes these limitations. Existing holomorphic embedding (HE) formulation do not incorporate shunt conductance of voltage regulating transformer and reactive power injection at certain buses of the transmission system. This paper extends existing HE formulation incorporating all the parameters and develops a new HE formulation for non-uniform loading of the system. Another contribution of the paper is the formulation of a novel voltage stability index that measures load distance as well as voltage distance to accurately assess the voltage stability state of the system. The proposed research work is investigated using benchmark IEEE 14, 30 and 118-bus test systems.
机译:现有的迭代载荷流程方法提供近距离加载点附近的杂散解决方案/偏离。该解决方案也受到初始条件的选择的影响。一种未被迭代的方法称为全统称嵌入式载荷 - 流量法(Helm)克服了这些限制。现有的全象嵌入(HE)配方不会在传动系统的某些公共汽车上纳入电压调节变压器的分流电导和反应电力注射。本文扩展了现有的他配方包含所有参数,并开发新的他配方以进行系统的不均匀负载。纸张的另一个贡献是制定新的电压稳定性指数,可测量负载距离以及准确地评估系统的电压稳定状态的电压距离。使用基准IEEE 14,30和118总线测试系统来研究所提出的研究工作。

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