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Experimental evaluation of acceleration waveform replication on electrohydraulic shaking tables: A review

机译:加速波形复制对电液振动桌的实验评价:综述

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摘要

An electrohydraulic shaking table is an essential experimental facility in many industrial applications to real-time simulate actual vibration situations including structural vibration and earthquake. However, there is still a challenging area for its acceleration waveform replication because acceleration output responses of the electrohydraulic shaking table would not be as intended in magnitude and phase of an acceleration closed-loop system due to inherent hydraulic nonlinear dynamics of electrohydraulic servo systems. Thus, how to accurately and coordinately control parallel hydraulic actuators of the electrohydraulic shaking table is a critical issue; so, many control techniques have been developed to address the issue. Some currently used key techniques in this field are reviewed in the article, which are the objectives of academic investigations and industrial applications. The article reviews some new control algorithms for the electrohydraulic shaking table to obtain high-fidelity acceleration waveform replication accuracy.
机译:电液摇动台是许多工业应用中的基本实验设备,实际模拟实际振动情况,包括结构振动和地震。然而,由于电液伺服系统的固有液压非线性动态,因此仍然存在加速波形复制的具有挑战性的区域,因为电液摇动台的加速度输出响应不会与加速度闭环系统的幅度和相位的相同。因此,如何准确地协调电液摇动台的平行液压致动器是一个关键问题;因此,已经开发了许多控制技术来解决问题。本文中的一些目前使用的关键技术是在文章中进行的,这些技术是学术调查和工业应用的目标。本文介绍了一些新的控制算法,用于电液振动台,获得高保真加速波形复制精度。

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