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Implementation of SoC Based Real-Time Electromagnetic Transient Simulator

机译:基于SoC的实时电磁暂态仿真器的实现

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摘要

Real-time electromagnetic transient simulators are important tools in the design stage of new control and protection systems for power systems. Real-time simulators are used to test and stress new devices under similar conditions that the device will deal with in a real network with the purpose of finding errors and bugs in the design. The computation of an electromagnetic transient is complex and computationally demanding, due to features such as the speed of the phenomenon, the size of the network, and the presence of time variant and nonlinear elements in the network. In this work, the development of a SoC based real-time and also offline electromagnetic transient simulator is presented. In the design, the required performance is met from two sides, (a) using a technique to split the power system into smaller subsystems, which allows parallelizing the algorithm, and (b) with specialized and parallel hardware designed to boost the solution flow. The results of this work have shown that for the proposed case studies, based on a balanced distribution of the node of subsystems, the proposed approach has decreased the total simulation time by up to 99 times compared with the classical approach running on a single high performance 32-bit embedded processor ARM-Cortex A9.
机译:实时电磁暂态模拟器是电力系统新型控制和保护系统设计阶段的重要工具。实时仿真器用于在设备将在实际网络中处理的相似条件下测试新设备并对其施加压力,目的是发现设计中的错误和错误。由于现象的速度,网络的大小以及网络中时变和非线性元素的存在,电磁暂态的计算是复杂且计算量大的。在这项工作中,提出了基于SoC的实时和离线电磁瞬态模拟器的开发。在设计中,从两个方面满足了所需的性能:(a)使用一种将电源系统分成较小子系统的技术,该技术可以使算法并行化;(b)采用专门设计的并行硬件来提高解决方案流程。这项工作的结果表明,对于所提出的案例研究,基于子系统节点的平衡分布,与在单个高性能上运行的经典方法相比,所提出的方法将总仿真时间减少了多达99倍。 32位嵌入式处理器ARM-Cortex A9。

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  • 来源
    《Mathematical Problems in Engineering》 |2017年第2017期|5274517.1-5274517.14|共14页
  • 作者单位

    CINVESTAV, Unidad Guadalajara, Del Bosque Ave 1145, Zapopan 45019, Jal, Mexico;

    CINVESTAV, Unidad Guadalajara, Del Bosque Ave 1145, Zapopan 45019, Jal, Mexico;

    CINVESTAV, Unidad Guadalajara, Del Bosque Ave 1145, Zapopan 45019, Jal, Mexico;

    Catedras Conacyt Cinvestav, Unidad Guadalajara, Del Bosque Ave 1145, Zapopan 45019, Jal, Mexico;

    CINVESTAV, Unidad Guadalajara, Del Bosque Ave 1145, Zapopan 45019, Jal, Mexico;

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