AI 中文总结
本文针对电力电子系统的仿真需求,提出一种采用原生C内核与Python编排的事件驱动电磁暂态架构,提炼离散事件仿真核心要素,为电力电子电路仿真研究提供新方向。
AI 中文摘要
电力电子系统应依据其固有数学结构处理——即具有分段连续状态的固有开关特性与不连续性。因此,仿真器应围绕事件、开关拓扑及拓扑区间构建,而非仅采用连续时间求解器后续修正或平滑不连续性。本文提出一种简单的事件驱动电磁暂态(EMT)架构,采用原生C内核与Python编排。通过该方法,我们提炼了应用于电力电子问题的离散事件仿真核心要素,从而指明了一个广泛的研究方向,即将离散事件仿真的成熟思路适配到电力电子电路仿真中。
英文摘要
Power-electronics systems should be treated according to their natural mathematical structure---inherent switching and discontinuities with piecewise continuous states. Therefore, the simulator should be organized around events, switching topologies, and topology intervals, rather than only around a continuous-time solver that later corrects or smooths discontinuities. This paper presents a simple, event-driven EMT architecture using native C kernels with Python orchestration. With this method, we distill the essential elements of discrete-event simulation applied to power electronics problems and thereby point toward a broad research thrust wherein mature ideas from discrete-event simulation are adapted for use in simulating power electronics circuits.