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The performance of delay compensation in real-time dynamic substructuring

机译:实时动态子结构延迟补偿的性能

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摘要

Real-time dynamic substructuring (RTDS) is a state-of-the-art experimental technique for evaluating the dynamic performance of a structural system subjected to time-varying loads in civil engineering. The accuracy and stability of RTDS is affected by the natural dynamics of the constituent transfer system. Of various control strategies, and due to the merits of simple implementation and low computational cost, delay-compensation methods have become most pervasive. In this paper, the performance of delay compensation based methods for RTDS is assessed in terms of accuracy and stability. Three commonly-used delay compensation schemes are considered, two of which are time variant and one time invariant. Stability is assessed analytically, numerically, and experimentally. Accuracy is assessed numerically and experimentally. To provide a suitable test for the delay compensation control schemes, a shaking table is adopted as the RTDS transfer system. It is demonstrated numerically, analytically, and experimentally that when applied to transfer systems such as these, delay compensation can work to the detriment of test accuracy and test stability. Adequate performance of delay compensated, shaking-table based RTDS is confined to a narrow low frequency bandwidth, which severely restricts the range of potential application.
机译:实时动态子结构(RTD)是一种最先进的实验技术,用于评估经受土木工程时代载荷的结构系统的动态性能。 RTDS的准确性和稳定性受到组成转移系统的自然动态的影响。各种控制策略,由于简单的实施方面的优点和低计算成本,延迟补偿方法变得最普遍存在。本文在准确性和稳定性方面评估了基于RTDS的延迟补偿方法的性能。考虑了三种常用的延迟补偿方案,其中两个是时间变量和一个时间不变。分析,数值和实验评估稳定性。在数字和实验上评估准确性。为了为延迟补偿控制方案提供合适的测试,采用摇动台作为RTDS转移系统。在数字上,分析和实验证明,当应用于转移系统的转移系统时,延迟补偿可以损害测试精度和测试稳定性。足够的延迟补偿性能,基于震动表的RTD被限制在窄的低频带宽上,这严重限制了潜在应用范围。

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