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A wireless decentralized control experimental platform for vibration control of civil structures

机译:用于民用建筑振动控制的无线分散控制实验平台

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摘要

Considerable achievements in developing structural regulators as an important method for vibration control have been made over the last few decades. The use of large quantities of cables in traditional wired control systems to connect sensors, controllers, and actuators makes the structural regulators complicated and expensive. A wireless decentralized control experimental platform based on Wi-Fi unit is designed and implemented in this study. Centralized and decentralized control strategies as sample controllers are employed in this control system. An optimal control algorithm based on Kalman estimator is embedded in the dSPACE controller and the DSP controller. To examine the performance of this control scheme, a three-story steel structure is developed with active mass dampers installed on each floor as the wireless communication platform. Experimental results show that the wireless decentralized control exhibits good control performance and has various potential applications in industrial control systems. The proposed experimental system may become a benchmark platform for the validation of the corresponding wireless control algorithm.
机译:在过去的几十年中,在开发结构调节器作为控制振动的重要方法方面取得了相当大的成就。在传统的有线控制系统中使用大量电缆来连接传感器,控制器和执行器会使结构调节器变得复杂且昂贵。本文设计并实现了一种基于Wi-Fi单元的无线分散控制实验平台。在该控制系统中采用集中和分散控制策略作为样本控制器。在dSPACE控制器和DSP控制器中嵌入了基于Kalman估计器的最优控制算法。为了检查这种控制方案的性能,开发了一种三层钢结构,在每层楼上都装有有源质量阻尼器,作为无线通信平台。实验结果表明,无线分散控制具有良好的控制性能,在工业控制系统中具有多种潜在应用。所提出的实验系统可以成为用于验证相应的无线控制算法的基准平台。

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