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Study on Control Method to Improve the Performance of Dynamic Response of Shaking Table for Earthquake Simulation

机译:改善震动台动力响应性能对地震仿真的控制方法研究

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摘要

To address the problems of large-scale hydraulic shaking table for earthquake simulation, such as vibration frequency deviation, waveform distortion, seismic waves reappearance and so on, this paper is intended to develop simulation control system by applying three-parameter control technology and to calibrate and compensate the system performance. Velocity positive feedback technology is raised aiming to reduce the high hydraulic natural frequency of shaking table and increase the system damping ratio, and consequently leading to reduction of waveform distortion and improvement of system stability. Meanwhile relationship between the status variable feedback gain and the load change of shaking table is inferred. Through reasonable adjustment of the status variables gain, load change's influence on shaking table performance is eliminated. Digital control system, using the digital iterative control technology, further increases response accuracy of shaking table.
机译:为了解决地震仿真的大规模液压振动台问题,如振动频率偏差,波形失真,地震波重新出现等,本文旨在通过应用三参数控制技术和校准来开发模拟控制系统并补偿系统性能。速度正反馈技术提高了旨在减少振动台的高液压自然频率并提高系统阻尼比,从而导致减少波形失真和系统稳定性的提高。同时,推断出状态变量反馈增益与摇动表的负载变化之间的关系。通过合理调整状态变量的增益,消除了负载变化对振动台性能的影响。数字控制系统采用数字迭代控制技术,进一步提高了振动桌的响应精度。

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