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分相式有源电力滤波器设计与仿真实验研究 被引量:1
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作者 张文豪 张英豪 +1 位作者 黄庆樑 卓俊威 《实验室科学》 2021年第2期3-6,共4页
谐波污染是电力电子技术引入电力系统后带来的最严重问题之一。为了提升学生使用现代工具以及解决实际工程问题的能力,针对三相四线制电力系统中非线性负载带来的谐波问题,设计了以PLECS软件仿真和Typhoon-HIL硬件实时仿真相结合的滤波... 谐波污染是电力电子技术引入电力系统后带来的最严重问题之一。为了提升学生使用现代工具以及解决实际工程问题的能力,针对三相四线制电力系统中非线性负载带来的谐波问题,设计了以PLECS软件仿真和Typhoon-HIL硬件实时仿真相结合的滤波器设计及仿真实验。为了改善传统有源滤波器特性,提出一种能够快速有效提取谐波分量的算法,同时,考虑配电系统结构的特殊性,建立了分相式方案,通过多种方式仿真比较,测试结果证明了所提出的实验方案的有效性。软件仿真和硬件实时仿真相结合的实验更具有创新性和实践性,调动了学生的学习兴趣,提高了动手能力。 展开更多
关键词 谐波 有源电力滤波器 三相四线制 分相式结构
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Nonlinear finite-element-based structural system failure probability analysis methodology for gravity dams considering correlated failure modes 被引量:4
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作者 胡江 马福恒 吴素华 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第1期178-189,共12页
The structural system failure probability(SFP) is a valuable tool for evaluating the global safety level of concrete gravity dams.Traditional methods for estimating the failure probabilities are based on defined mathe... The structural system failure probability(SFP) is a valuable tool for evaluating the global safety level of concrete gravity dams.Traditional methods for estimating the failure probabilities are based on defined mathematical descriptions,namely,limit state functions of failure modes.Several problems are to be solved in the use of traditional methods for gravity dams.One is how to define the limit state function really reflecting the mechanical mechanism of the failure mode;another is how to understand the relationship among failure modes and enable the probability of the whole structure to be determined.Performing SFP analysis for a gravity dam system is a challenging task.This work proposes a novel nonlinear finite-element-based SFP analysis method for gravity dams.Firstly,reasonable nonlinear constitutive modes for dam concrete,concrete/rock interface and rock foundation are respectively introduced according to corresponding mechanical mechanisms.Meanwhile the response surface(RS) method is used to model limit state functions of main failure modes through the Monte Carlo(MC) simulation results of the dam-interface-foundation interaction finite element(FE) analysis.Secondly,a numerical SFP method is studied to compute the probabilities of several failure modes efficiently by simple matrix integration operations.Then,the nonlinear FE-based SFP analysis methodology for gravity dams considering correlated failure modes with the additional sensitivity analysis is proposed.Finally,a comprehensive computational platform for interfacing the proposed method with the open source FE code Code Aster is developed via a freely available MATLAB software tool(FERUM).This methodology is demonstrated by a case study of an existing gravity dam analysis,in which the dominant failure modes are identified,and the corresponding performance functions are established.Then,the dam failure probability of the structural system is obtained by the proposed method considering the correlation relationship of main failure modes on the basis of the mechanical mechanism analysis with the MC-FE simulations. 展开更多
关键词 gravity dam structural system failure probability nonlinear finite element response surface method computational platform
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