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A frequency response analysis approach for quantitative assessment of actuator tracking for real-time hybrid simulation

机译:用于实时混合仿真的执行器跟踪定量评估的频率响应分析方法

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摘要

Real-time hybrid simulation is a viable and economical technique that allows researchers to observe the behavior of critical elements at full scale when an entire structure is subjected to dynamic loading. To ensure reliable experimental results, it is necessary to evaluate the actuator tracking after the test, even when sophisticated compensation methods are used to negate the detrimental effect of servo-hydraulic dynamics. Existing methods for assessment of actuator tracking are often based on time-domain analysis. This paper proposes a frequency-domain-based approach to the assessment of actuator tracking for real-time hybrid simulations. To ensure the accuracy of the proposed frequency response approach, the effects of spectrum leakage are investigated as well as the length and sampling frequency requirements of the signals. Two signal pre-processing techniques (data segmentation and window transform) are also discussed and compared to improve the accuracy of the proposed approach. Finally the effectiveness of the proposed frequency-domain-based approach is demonstrated through both computational analyses and laboratory tests, including realtime tests with predefined displacement and real-time hybrid simulation.
机译:实时混合仿真是一种可行且经济的技术,它使研究人员可以在整个结构承受动态载荷时全面观察关键元件的行为。为了确保获得可靠的实验结果,即使使用复杂的补偿方法来抵消伺服液压动力学的不利影响,也必须在测试后评估执行器的跟踪情况。现有的用于评估致动器跟踪的方法通常基于时域分析。本文提出了一种基于频域的方法,用于实时混合仿真的执行器跟踪评估。为了确保所提出的频率响应方法的准确性,研究了频谱泄漏的影响以及信号的长度和采样频率要求。还讨论并比较了两种信号预处理技术(数据分割和窗口变换),以提高所提出方法的准确性。最后,通过计算分析和实验室测试(包括具有预定义位移的实时测试和实时混合仿真),证明了所提出的基于频域方法的有效性。

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