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Bifurcation diagram with Electromagnetic Transient Program (EMTP) for ferroresonance analysis

机译:带电磁暂态程序(EMTP)的分叉图用于铁磁谐振分析

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摘要

Bifurcation diagram presents the steady state behavior of a nonlinear system with respect to important parameters and initial conditions. The most popular method for generating bifurcation diagram is based on the simulation of ferroresonant circuit with Ordinary Differential Equation (ODE) and XPPAUT. However, this method is limited only to single phase equivalent circuit with many assumptions for simplification. The Electro-Magnetic Transient Program (EMTP) is popular for providing time domain solutions to the ferroresonant circuit in single phase and three phase systems. PSCAD/EMTDC, which is developed from EMTP, offers simple modeling of individual physical component without the need to simplify the system to accommodate the analytical expression. For single phase ferroresonant circuit, ODE with XPPAUT and PSCAD/EMTDC give similar results based on phase trajectories, Poincaré sections, and Lyapunov exponents. Application of brute force technique and Poincaré sections on steady state solutions, can generate bifurcation diagrams for three phase power system. Generation of bifurcation diagram with EMTP method combines the simplicity in circuit modeling with practical features of the three phase power system and the simplicity in investigation of ferroresonance with respect to different operating conditions.
机译:分叉图展示了非线性系统在重要参数和初始条件方面的稳态行为。生成分叉图的最流行方法是基于使用常微分方程(ODE)和XPPAUT模拟铁氧体电路。然而,该方法仅出于简化的许多假设而仅限于单相等效电路。电磁暂态程序(EMTP)流行于为单相和三相系统中的铁磁谐振电路提供时域解决方案。由EMTP开发的PSCAD / EMTDC提供了单个物理组件的简单建模,而无需简化系统以适应分析表达式。对于单相铁磁谐振电路,具有XPPAUT和PSCAD / EMTDC的ODE会根据相轨迹,庞加莱截面和Lyapunov指数得出相似的结果。在稳态解决方案上应用蛮力技术和庞加莱部分,可以生成三相电力系统的分叉图。用EMTP方法生成分叉图将电路建模的简单性与三相电力系统的实用功能相结合,并且在不同工作条件下研究铁磁谐振也很简单。

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