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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Input-Output Selection for Planar Tensegrity Models
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Input-Output Selection for Planar Tensegrity Models

机译:平面张力模型的输入输出选择

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摘要

The input-output selection approach followed in this brief uses a rigorous and systematic procedure, efficiently selecting actuators and/or sensors that guarantee a desired level of performance, embedded in a heuristic. The procedure generates all so-called minimal dependent sets and uses a closed-loop criterion. The heuristic is a divide-ami-conquer one. This approach is applied to controlled tensegrity structures, using as criterion efficiently computable conditions for the existence of a stabilizing H{sub}∞ controller achieving a desired level of performance. Structural systems, like controlled tensegrities, are a prime example for application of techniques that address system design issues, because they present opportunities in choosing actuators/sensors and in choosing their mechanical structure. Results for a three-unit planar tensegrity structure, where all 26 tendons can be used as actuator or sensor devices, making up 52 devices from which to choose, demonstrate the approach. Two design specifications were explored, one is related to the dynamical stiffness of the structure, the other to vibration isolation. The feasible sets of actuators and sensors depend on the specifications and really differ for both, tat are mostly composed of much less than 52 devices.
机译:本摘要中遵循的输入-输出选择方法使用了严格而系统的过程,有效地选择了嵌入启发式方法的执行器和/或传感器,以确保所需的性能水平。该过程生成所有所谓的最小相关集并使用闭环标准。启发式是一种“分而治之”的方法。该方法适用于受控的张力结构,使用有效的可计算条件作为标准,以实现达到所需性能水平的稳定H {sub}∞控制器。结构系统(例如受控张力)是解决系统设计问题的技术应用的主要示例,因为它们为选择执行器/传感器和选择其机械结构提供了机会。三单元平面张力结构的结果表明,该方法可以将所有26条腱用作致动器或传感器设备,构成52种可供选择的设备。探索了两种设计规范,一种与结构的动力刚度有关,另一种与隔振有关。促动器和传感器的可行设置取决于规格,并且两者实际上有所不同,tat主要由少于52个设备组成。

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