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首页> 外文期刊>Trends in Ecology & Evolution >Efficient and Robust Dynamic Simulation of Power Systems With Holomorphic Embedding
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Efficient and Robust Dynamic Simulation of Power Systems With Holomorphic Embedding

机译:具有核性嵌入的电力系统的高效稳健动态仿真

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Dynamic simulation is vitally important in power system analysis, but traditional approaches based on numerical integration over small time steps are time-consuming. Also, the Newton-Raphson method suffers from difficulty in convergence when solving nonlinear algebraic equations. This paper proposes a novel dynamic simulation approach based on holomorphic embedding. By obtaining a high-order approximation of system dynamics, it achieves a much larger time step and thus enhances the computational efficiency significantly. In addition, the new approach avoids non-convergence issues in solving algebraic equations, which improves robustness. The approach includes flexible modeling of synchronous generators and controllers, and we propose a method for modeling generator coordinate transformations. The approach is tested on the IEEE 39-bus, 10-generator system and a Polish 2383-bus, 327-generator system. The results demonstrate promising computational efficiency and satisfactory numerical robustness for the analysis of large-scale power systems.
机译:动态仿真在电力系统分析中非常重要,但基于小时间步长的数值集成的传统方法是耗时。此外,当求解非线性代数方程时,牛顿-Raphson方法遭受汇总的困难。本文提出了一种基于核心嵌入的新型动态仿真方法。通过获得系统动态的高级近似,它实现了更大的时间步长,从而显着提高了计算效率。此外,新方法避免了解决代数方程中的非收敛性问题,这提高了鲁棒性。该方法包括灵活的同步发电机和控制器建模,并提出了一种用于建模生成器坐标变换的方法。该方法在IEEE 39总线,10发电机系统和波兰2383总线,327发电机系统上进行测试。结果表明,用于分析大型电力系统的有前途的计算效率和令人满意的数值稳健性。

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