基于功率键合图的液压励磁系统建模与仿真

Junxia Li, Z. Kou
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引用次数: 0

摘要

介绍了一种通过激振器强制口产生激振力的液压脉动激振装置。在概述系统组成和工作原理的基础上,在实验室建立了液压波动励磁装置仿真实验系统,同时运用功率键合图和控制理论建立了该实验系统的数学模型,并利用Matlab/Simulink仿真软件对系统进行了仿真分析。仿真结果表明:基于激波激振器强制口组成的液压脉动激励装置充分利用了强制口的液压冲击波和激波激振器阀口的瞬时启闭,因此该系统的效率比一般的液压脉动激励系统有更明显的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Simulation of the Hydraulic Excitation System Based on the Power Bond Graph
The article introduces one kind hydraulic fluctuation excitation installment which produces the exciting force through the shock exciter compulsion port. Basing on the synopsis system's composition and work principle, the hydraulic fluctuation excitation installment simulation experiment system is established in the laboratory, simultaneously the power bond graph and the control theory is applied to establish this experiment system's mathematical model, and it has been carried on the simulation analysis using the Matlab/Simulink simulation software to the system. The result of simulation indicates: The hydraulic fluctuation excitation equipment which based on the shock exciter compulsion port composition has fully used the hydraulic shock-wave of the compulsion port and shock exciter valve port instantaneous opening and shutting, therefore this system's efficiency has the more distinct enhancement than the general hydraulic fluctuation excitation system.
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