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A Numerical Convex Lens for the State-Discretized Modeling and Simulation of Megawatt Power Electronics Systems as Generalized Hybrid Systems 被引量:3
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作者 Bochen Shi Zhengming Zhao +2 位作者 Yicheng Zhu Zhujun Yu Jiahe Ju 《Engineering》 SCIE EI 2021年第12期1766-1777,共12页
Modeling and simulation have emerged as an indispensable approach to create numerical experiment platforms and study engineering systems.However,the increasingly complicated systems that engineers face today dramatica... Modeling and simulation have emerged as an indispensable approach to create numerical experiment platforms and study engineering systems.However,the increasingly complicated systems that engineers face today dramatically challenge state-of-the-art modeling and simulation approaches.Such complicated systems,which are composed of not only continuous states but also discrete events,and which contain complex dynamics across multiple timescales,are defined as generalized hybrid systems(GHSs)in this paper.As a representative GHS,megawatt power electronics(MPE)systems have been largely integrated into the modern power grid,but MPE simulation remains a bottleneck due to its unacceptable time cost and poor convergence.To address this challenge,this paper proposes the numerical convex lens approach to achieve state-discretized modeling and simulation of GHSs.This approach transforms conventional time-discretized passive simulations designed for pure-continuous systems into state-discretized selective simulations designed for GHSs.When this approach was applied to a largescale MPE-based renewable energy system,a 1000-fold increase in simulation speed was achieved,in comparison with existing software.Furthermore,the proposed approach uniquely enables the switching transient simulation of a largescale megawatt system with high accuracy,compared with experimental results,and with no convergence concerns.The numerical convex lens approach leads to the highly efficient simulation of intricate GHSs across multiple timescales,and thus significantly extends engineers’capability to study systems with numerical experiments. 展开更多
关键词 Generalized hybrid systems Megawatt power electronics Modeling and simulation Numerical convex lens
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基于平行光管法的薄凸透镜焦距测量 被引量:8
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作者 李晓磊 《应用光学》 CAS CSCD 北大核心 2019年第5期859-862,共4页
薄凸透镜是光学仪器中最重要、最基本的元件,在天文、军事、医学等众多领域发挥着重要作用。焦距是薄透镜、反射镜等光学系统最重要的特性参量,因而准确测量薄透镜的焦距则显得尤为重要。实验室测量薄凸透镜焦距的方法有物距像距法、自... 薄凸透镜是光学仪器中最重要、最基本的元件,在天文、军事、医学等众多领域发挥着重要作用。焦距是薄透镜、反射镜等光学系统最重要的特性参量,因而准确测量薄透镜的焦距则显得尤为重要。实验室测量薄凸透镜焦距的方法有物距像距法、自准直法、光电法、平行光管法等。由于采用前3种方法测量透镜焦距的精度偏低,针对该问题,提出利用平行光管法测量薄凸透镜的焦距,并对实验误差作简单分析。实验结果表明,该方法可以高精度地测量薄凸透镜焦距,相对误差仅为0.138%。因此,采用平行光管法的薄凸透镜焦距测量方法是有效可行的。 展开更多
关键词 薄凸透镜 焦距测量 平行光管法
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