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首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Real-time force control for servo-hydraulic actuator systems using adaptive time series compensator and compliance springs
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Real-time force control for servo-hydraulic actuator systems using adaptive time series compensator and compliance springs

机译:使用自适应时间序列补偿器和顺应性弹簧的伺服液压执行器系统实时力控制

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摘要

Servo-hydraulic actuators have been widely used for experimental studies in engineering. They can be controlled in either displacement or force control mode depending on the purpose of a test. It is necessary to control the actuators in real time when the rate-dependency effect of a test specimen needs to be accounted for under dynamic loads. Real-time hybrid simulation (RTHS) and effective force testing (EFT) method, which can consider the rate-dependency effect, have been known as viable alternatives to the shake table testing method. Due to the lack of knowledge in real-time force control, however, the structures that can be tested with RTHS and EFT are fairly limited. For instance, satisfying the force boundary condition for axially stiff members is a challenging task in RTHS, while EFT has a difficulty to be implemented for nonlinear structures. In order to resolve these issues, this paper introduces new real-time force control methods utilizing the adaptive time series (ATS) compensator and compliance springs. Unlike existing methods, the proposed force control methods do not require the structural modeling of a test structure, making it easy to be implemented especially for nonlinear structures. The force tracking performance of the proposed methods is evaluated for a small-scale steel mass block system with a magneto-rheological damper subjected to various target forces. Accuracy, time delay, and resonance response of these methods are discussed along with their force control performance for an axially stiff member. Overall, a satisfactory force tracking performance was observed by using the proposed force control methods.
机译:伺服液压执行器已广泛用于工程实验研究。可以根据测试目的以位移或力控制模式对其进行控制。当需要在动态载荷下考虑试样的速率依赖性效应时,必须实时控制执行器。可以考虑速率依赖性效应的实时混合仿真(RTHS)和有效力测试(EFT)方法已被公认为是振动台测试方法的可行替代方案。但是,由于缺乏实时力控制方面的知识,因此可以用RTHS和EFT进行测试的结构相当有限。例如,在RTHS中,满足轴向刚度构件的力边界条件是一项艰巨的任务,而EFT对于非线性结构则难以实现。为了解决这些问题,本文介绍了利用自适应时间序列(ATS)补偿器和顺应性弹簧的新型实时力控制方法。与现有方法不同,所提出的力控制方法不需要测试结构的结构建模,因此易于实现,尤其是对于非线性结构。对于带有磁流变阻尼器的小型钢制质量块系统,评估了所提出方法的力跟踪性能,该系统承受了各种目标力。讨论了这些方法的准确性,时间延迟和共振响应,以及它们对轴向刚性构件的力控制性能。总体而言,通过使用建议的力控制方法,观察到了令人满意的力跟踪性能。

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