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Automated Parameter Identification and Calibration for the Itaipu Power Generation System using Modelica, FMI, and RaPId

机译:使用Modelica,FMI和RaPId的Itaipu发电系统的自动参数识别和校准

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Power system modeling and simulation are essential tools in the power industry. System models allow for the understanding system operations, perform system planning studies, and help identifying and correcting problems within the system. The error between models and physical system response must be minimized to ensure that that simulations used in studies provide an accurate representation of the power system. Phasor measurement data can be used to calibrate models and reduce modeling errors. In this paper this process is automated for the Itaipu system using RaPId, a software tool that integrates measurements, models in Modelica/FMI standards, and optimization routines. This is achieved by using a classical gradient optimization method to calibrate parameters to the phasor measurements. Two calibration methods are presented here, where parameters of a synchronous generator, automatic voltage regulator, and power system stabilizer are estimated.
机译:电力系统建模和仿真是电力行业中必不可少的工具。系统模型使您可以了解系统操作,执行系统计划研究并帮助识别和纠正系统中的问题。必须最小化模型与物理系统响应之间的误差,以确保研究中使用的仿真能够准确表示电源系统。相量测量数据可用于校准模型并减少建模误差。在本文中,使用RaPId(用于集成测量,Modelica / FMI标准中的模型和优化例程的软件工具)为Itaipu系统自动执行此过程。这是通过使用经典的梯度优化方法来校准相量测量参数来实现的。这里介绍了两种校准方法,其中估计了同步发电机,自动电压调节器和电力系统稳定器的参数。

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