电子负载敏感泵的建模与分析

Ganga P. Jayaraman, Stephen V. Lunzman
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引用次数: 7

摘要

本文描述了由负载敏感泵、流量控制阀、液压缸和代表连杆惯性的有效质量组成的电子负载敏感液压系统的动力学建模和分析。负载敏感液压回路容易出现不稳定,并且经常需要孔口和控制体积形式的液压过滤器来消除不必要的振荡。由于系统的非线性和传递函数的高阶性,使得闭环控制器的设计变得困难。本文从运动方程出发,建立了一个线性模型,并与基于MATLAB的非线性仿真模型进行了验证。在此基础上,推导了用于控制器设计的三阶模型。
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Modeling and analysis of an electronic load sensing pump
This paper describes the modeling and analysis of the dynamics of an electronic load sensing hydraulic system consisting of a load sensing pump, a flow control valve, a hydraulic cylinder and an effective mass representing the linkage inertia. Load sensing hydraulic circuits are prone to instabilities and frequently require hydraulic filters in the form of orifices and control volumes to remove unwanted oscillations. Closed loop controllers for such systems are difficult to design due to the nonlinearities and high order transfer functions. In this paper a linear model is derived from equations of motion, and validated against a nonlinear simulation model based on MATLAB. Then, a third order model is derived that can be used for controller design.
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