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首页> 外文期刊>Journal of structural engineering >Active Tensegrity Structure
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Active Tensegrity Structure

机译:主动张力结构

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Most active structures involve direct control of single parameters when there is a closed form relationship between the response required and the control parameter. Building on a previous study of an adjustable structure, this paper describes geometric active control of a reusable tensegrity structure that has been enlarged to five modules with improved connections and is equipped with actuators. Closely coupled strut and cable elements behave nonlinearly (geometrically) even for small movement of the 10 telescopic struts. The control criterion for maintaining the upper surface slope has no closed form relationship with strut movement. The behavior of the structure is studied under 25 load cases. A newly developed stochastic search algorithm successfully identifies good control commands following computation times of up to 1 h. Sequential application of the commands through sets of partial commands helps to avoid exceeding limits during intermediate stages and adds robustness to the system. Reuse of a previously calculated command reduces the response time to less than 1 min. Feasible storage and reuse of such commands confirm the potential for improving performance during service.
机译:当所需的响应和控制参数之间存在闭合形式的关系时,大多数活动结构都涉及直接控制单个参数。在对可调结构的先前研究的基础上,本文描述了可重复使用的张力结构的几何主动控制,该结构已扩展为五个具有改进连接的模块并配备了执行器。紧密耦合的支撑杆和缆索单元即使在10个伸缩支撑杆的微小移动中也表现出非线性(几何上)的行为。维持上表面坡度的控制标准与支柱运动没有闭合形式的关系。在25个载荷工况下研究了结构的性能。新开发的随机搜索算法可在长达1小时的计算时间后成功识别出良好的控制命令。通过部分命令集顺序应用命令有助于避免在中间阶段超出限制,并增加系统的健壮性。重用先前计算的命令可将响应时间减少到不到1分钟。此类命令的可行存储和重用证实了在服务期间提高性能的潜力。

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