An Investigative Study on Impact of Frequency Dynamics in Load Modeling

Musaed Mohammed, A. Abdulkarim, A. Abubakar, A. Kunya, Ibrahim Abdullahi Shehu Bashir Musa Umar
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引用次数: 1

Abstract

Load modeling plays a significant impact in assessing power system stability margin, control, and protection. Frequency in the power system is desired to be kept constant, but in a real sense, it is not constant as loads continually change with time. In much literature, frequency dynamics are ignored in the formulation of load models for the basic assumption that it does not affect the models. In this paper, the composite load model was formulated with Voltage-Frequency Dependency (V-FD) on real and reactive powers and applied to estimate the load model. 2- Area network 4- machines Kundur test network was used for testing the developed model. The model was trained with measurements from a low voltage distribution network supplying the Electrical Engineering department at Ahmadu Bello University, Zaria. Both training and testing data were captured under normal system operation (dynamics). To evaluate the V-FD model performance, Voltage-Dependent (VD) model was examined on the same measured data. The work makes use of the Feed Forward Neural Network (FFNN) as a nonlinear estimator. Results obtained indicate that including frequency dynamics in modeling active power reduces the accuracy of the model. While in modeling reactive power the model performance improves. Hence, it can be said that including frequency dynamics in load modeling depends on the intended application of the model.
频率动力学对负荷建模影响的调查研究
负荷建模在电力系统稳定裕度评估、控制和保护中起着重要的作用。人们希望电力系统中的频率保持恒定,但在实际意义上,它并不是恒定的,因为负载随时间不断变化。在许多文献中,频率动力学在荷载模型的制定中被忽略,因为基本假设它不影响模型。本文建立了考虑实功率和无功功率的电压-频率相关性(V-FD)的复合负荷模型,并将其应用于负荷模型的估计。采用2-局域网4-机昆都尔测试网对所开发的模型进行了测试。该模型是通过为Zaria Ahmadu Bello大学电气工程系供电的低压配电网络的测量数据进行训练的。训练和测试数据都是在正常的系统运行(动态)下捕获的。为了评估V-FD模型的性能,在相同的测量数据上检验了电压依赖(VD)模型。该工作利用前馈神经网络(FFNN)作为非线性估计器。结果表明,在有功功率建模中加入频率动力学会降低模型的精度。在对无功功率进行建模时,提高了模型的性能。因此,可以说,在负荷建模中是否包含频率动态取决于模型的预期应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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