Electrohydraulic Complex Parameters Determination Based on the Energy Balance Equations

V. Kovalchuk, T. Korenkova, A. Almashakbeh
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引用次数: 7

Abstract

it is shown that long-term operation of electrohydraulic complexes is accompanied by a change in the parameters of the hydraulic system: the resistance and reactance of the pump and the pipeline network. It is noted that the existing methods for determining hydraulic resistances are approximate and do not take into account the properties of the pumped liquid and an increase in pipe roughness caused by wear. The possibility of determining the parameters of the electrohydraulic complexes based on the equations of the energy balance, formulated for the equivalent electrical circuit based on the method of electrohydraulic analogy, is shown. It is found out that the system of identification equations should be grounded on the equations of the energy balance of the harmonic power components between the hydraulic power source and the elements of the hydraulic system. To expand the number of identification equations at the input of the system, it is necessary to generate a test signal including constant and time-variable components.
基于能量平衡方程的电液复合参数确定
结果表明,电液复合体的长期运行伴随着液压系统参数的变化:泵和管网的阻力和电抗。值得注意的是,现有的确定水力阻力的方法是近似的,没有考虑泵送液体的特性和磨损引起的管道粗糙度的增加。给出了基于电液类比法建立的等效电路能量平衡方程确定电液复合物参数的可能性。发现辨识方程系统应以液压动力源与液压系统各元件之间谐波功率分量的能量平衡方程为基础。为了扩大系统输入处的识别方程的数量,需要生成包含常数和时变分量的测试信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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