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Simple, robust hybrid test systems for non-linear structural dynamic research and development

机译:用于非线性结构动态研究和开发的简单,坚固的混合测试系统

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Hybrid or real-time pseudo-dynamic tests couple virtual structures under dynamic loading with physical sub-structures or devices in a dynamic test rig. The use of sensors and actuators in a closed-loop feedback system maintains the dynamic equilibrium of the overall system comprising the physical test article and virtual modelled structure. Hybrid testing thus alleviates much of the time and cost associated with full-scale testing and enables tests that would be infeasible as full-scale complete structural tests. This research presents a simple, low-cost, robust hybrid test system, and outlines solutions to the major issues faced in developing any hybrid system. The overall approach is centred on the dSpace~(TM) real-time control system development tool. The major issues in developing a hybrid system are: minimal signal processing lag, optimised sensing resolution and bandwidth, and efficient model computation. All three affect the ability of the system to maintain dynamic equilibrium of the overall virtual-physical system, and thus provide an accurate test. The final system readily accommodates non-linear-multi-degree-of-freedom models and a 1 kHz operating bandwidth.
机译:混合或实时伪动态测试在动态加载下与动态测试钻机中的物理子结构或设备进行动态加载的耦合虚拟结构。在闭环反馈系统中使用传感器和致动器维持整个系统的动态平衡,包括物理测试物品和虚拟建模结构。因此,混合测测试减轻了与全尺度测试相关的大部分时间和成本,并使测试能够作为满量程完全结构测试的测试。本研究提出了一种简单,低成本,强大的混合测试系统,并概述了开发任何混合系统所面临的主要问题的解决方案。整体方法以DSPACE〜(TM)实时控制系统开发工具为中心。开发混合系统的主要问题是:最小的信号处理滞后,优化的感测分辨率和带宽,有效的模型计算。所有三个都会影响系统维持整体虚拟物理系统的动态平衡的能力,从而提供准确的测试。最终系统容易容纳非线性多程度自由度和1 kHz的操作带宽。

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