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An interactive visual enviroment based on advanced numerical and computer techniques for power systems applications

机译:基于先进数值和计算机技术的交互式视觉环境,用于电力系统应用

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This contribution details the application of a developed interactive visual environment for power system analysis. In principle, it is based on a methodology to obtain the numerical solution of the Ordinary Differential Equations (ODEs) that represent the dynamic behavior of power systems. The methodology relies on the application of Object Oriented Programming (OOP) techniques, so that power system components can be represented as objects, which are later used as functional blocks, facilitating the representation of a system of any type of complexity. Parallel Programming (PP) techniques are also applied in order to fully exploit the capabilities of new micro-processors of executing more than one process simultaneously, with the aim of reducing the simulation time. Besides, the parallel evaluation scheme presented in this paper has shown to be effective and can be easily adapted to any other numerical integration method without the need to modify the numerical algorithm. Case studies are presented which demonstrate the effectiveness of the proposed interactive digital tool and the methodology for power system analysis.
机译:该文稿详细介绍了开发的交互式视觉环境在电力系统分析中的应用。原则上,它基于一种方法来获得代表电力系统动态行为的常微分方程(ODE)的数值解。该方法依赖于面向对象编程(OOP)技术的应用,因此电力系统组件可以表示为对象,以后用作功能块,从而可以表示任何类型的复杂性的系统。为了减少仿真时间,还充分利用了并行编程(PP)技术,以充分利用新型微处理器同时执行多个过程的能力。此外,本文提出的并行评估方案已经证明是有效的,并且可以轻松地适用于任何其他数值积分方法,而无需修改数值算法。案例研究表明了所提出的交互式数字工具和电力系统分析方法的有效性。

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