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Determining the Norton's Equivalent Model of Distribution System with Distributed Generation (DG) for Stability Analysis

机译:用分布式发电(DG)确定诺顿的分布系统等同模型,用于稳定性分析

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Background: Since the distribution networks are passive until Distributed Generation (DG) is not being installed into them, the stability issues occur in the distribution system after the integration of DG. Methods: In order to assure the simplicity during the calculations, many approximations have been proposed for finding the system's parameters i.e. Voltage, active and reactive powers and load angle, more efficiently and accurately. This research presents an algorithm for finding the Norton's equivalent model of distribution system with DG, considering from receiving end. Norton's model of distribution system can be determined either from its complete configuration or through an algorithm using system's voltage and current profiles. The algorithm involves the determination of derivative of apparent power against the current (dS/dI_L) of the system. Results: This work also verifies the accuracy of proposed algorithm according to the relative variations in the phase angle of system's impedance. This research also considers the varying states of distribution system due to switching in and out of DG and therefore Norton's model needs to be updated accordingly. Conclusion: The efficacy of the proposed algorithm is verified through MATLAB simulation results under two scenarios, (i) normal condition and (ii) faulty condition. During normal condition, the stability factor near to 1 and change in dS/dI_L was near to 0 while during fault condition, the stability factor was higher than 1 and the value of dS/dI_L was away from 0.
机译:背景:由于分发网络被动直到未安装分布式生成(DG),因此在分配系统之后,在DG集成之后发生稳定性问题。方法:为了确保在计算过程中的简单性,已经提出了许多近似用于找到系统的参数即电压,主动和无功功率和负载角,更有效地精确。本研究提出了一种用于查找从接收端的DG查找Norton等效模型的算法。 Norton的分配系统模型可以从其完整配置或通过使用系统电压和电流配置文件的算法来确定。该算法涉及确定对系统的电流(DS / DI_L)的表观功率的衍生物。结果:这项工作还根据系统阻抗相位角的相对变化来验证所提出的算法的准确性。该研究还认为由于切换和出于DG而导致的分配系统的不同状态,因此需要相应地更新Norton的模型。结论:通过Matlab仿真结果验证了所提出的算法的疗效,在两种情况下,(i)正常情况和(ii)故障条件。在正常情况下,在故障条件下,DS / DI_1附近的稳定性因子和DS / DI_L的变化靠近0,稳定性因子高于1,DS / DI_L的值远离0。

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