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首页> 外文期刊>Mathematical Problems in Engineering >Circuit Implementation and Synchronization Control of Chaotic Horizontal Platform Systems by Wireless Sensors
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Circuit Implementation and Synchronization Control of Chaotic Horizontal Platform Systems by Wireless Sensors

机译:无线传感器对混沌水平平台系统的电路实现与同步控制

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摘要

horizontal platform system (hps) produces a nonlinear behavior from precision machinery systems. This mechanical system is implemented mainly in offshore areas or earthquake engineering. However; elucidating or controlling this non-linear behavior of mechanical systems is extremely difficult and time consuming. Therefore; in addition to developing an electronic circuit to implement hps; this work designs a sliding mode control (smc) for synchronizing the state trajectories of two horizontal platform systems; subsequently allowing us to easily understand the hps; perform more detailed analysis; and achieve further control. Experimental results demonstrate the feasibility of implementing the hps by the proposed electronic circuit system. Comparing the proposed electronic circuitry designs and the hps of computer simulation reveals that the results of the non-linear dynamic behavior correlate well with each other. Finally; based on use of the control technology; master-slave chaos synchronization with sliding mode control is achieved by wireless sensors.
机译:水平平台系统(hps)从精密机械系统产生非线性行为。该机械系统主要在海上地区或地震工程中实施。然而;阐明或控制机械系统的这种非线性行为极其困难且耗时。因此;除了开发实现hp的电子电路外;这项工作设计了一种滑模控制(smc),用于同步两个水平平台系统的状态轨迹。随后使我们能够轻松理解hp;进行更详细的分析;并实现进一步控制。实验结果证明了通过所提出的电子电路系统实施功率放大器的可行性。比较拟议的电子电路设计和计算机仿真的功率,发现非线性动态行为的结果相互之间具有很好的相关性。最后;基于控制技术的使用;通过无线传感器实现带滑模控制的主从混沌同步。

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  • 来源
    《Mathematical Problems in Engineering 》 |2013年第3期| 903584.1-903584.6| 共6页
  • 作者

    Meei-Ling Hung; Her-Terng Yau;

  • 作者单位

    Department of Electrical Engineering, Far East University, Tainan 74448, Taiwan;

    Department of Electrical Engineering, National Chin-Yi University of Technology, Taichung 41170, Taiwan;

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