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Analysis of decimation techniques to improve computational efficiency of a frequency-domain evaluation approach for real-time hybrid simulation

机译:分析抽取技术以提高实时混合仿真的频域评估方法的计算效率

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摘要

Accurate actuator tracking is critical to achieve reliable real-time hybrid simulation results for earthquake engineering research. The frequency-domain evaluation approach provides an innovative way for more quantitative post-simulation evaluation of actuator tracking errors compared with existing time domain based techniques. Utilizing the Fast Fourier Transform the approach analyzes the actuator error in terms of amplitude and phrase errors. Existing application of the approach requires using the complete length of the experimental data. To improve the computational efficiency, two techniques including data decimation and frequency decimation are analyzed to reduce the amount of data involved in the frequency-domain evaluation. The presented study aims to enhance the computational efficiency of the approach in order to utilize it for future on-line actuator tracking evaluation. Both computational simulation and laboratory experimental results are analyzed and recommendations on the two decimation factors are provided based on the findings from this study.
机译:对于地震工程研究而言,准确的执行器跟踪对于获得可靠的实时混合仿真结果至关重要。与现有的基于时域的技术相比,频域评估方法为执行器跟踪误差的定量评估提供了一种创新的方法。利用快速傅立叶变换,该方法根据幅度和短语误差分析了执行器误差。该方法的现有应用需要使用实验数据的完整长度。为了提高计算效率,对包括数据抽取和频率抽取在内的两种技术进行了分析,以减少频域评估中涉及的数据量。提出的研究旨在提高该方法的计算效率,以便将其用于将来的在线执行器跟踪评估。分析了计算仿真结果和实验室实验结果,并根据这项研究的结果提供了两个抽取因子的建议。

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