首页> 外文会议>Symposium on fluid power and motion control 2018 >CLOSED LOOP POSITION AND PRE-STRESS CONTROL FOR A MORPHING AIRCRAFT WING WITH DISTRIBUTED MULTI-AXIS PNEUMATIC ACTUATION
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CLOSED LOOP POSITION AND PRE-STRESS CONTROL FOR A MORPHING AIRCRAFT WING WITH DISTRIBUTED MULTI-AXIS PNEUMATIC ACTUATION

机译:分布多轴气动气动变形机翼的闭环位置和预应力控制

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This paper presents the design and control of a morphing wing structure using an active tensegrity structure. A tensegrity structure, which is a set of compressive members (struts) stabilized by a set of tensile members (cables) is a good basis for creating a lightweight active structure, due to its potentially high stiffness-to-weight ratio, and the ease with which actuators can be embedded by replacing selected members in the structure. In this work, a multi-axis control scheme is developed for closed loop control of the shape and internal force (pre-stress) of the structure. An experimental prototype has been built, with 6 unidirectional pneumatic cylinders controlled by pulse-width-modulated switching valves. Shape change in terms of twisting and span-wise bending are demonstrated, and an optical motion tracking system is used to help investigate the dynamic position control of the structure. The structure can achieve ±15° twist change for wing angle of attack or ±10° span-wise bending in a 300mm span length. By simultaneously controlling the structural pre-stress, the geometric stiffness of the structure can also be varied. Future research is discussed, which will involve embedding the active structure in a wing aerofoil and testing in a wind tunnel.
机译:本文介绍了使用主动张力结构的变态机翼结构的设计和控制。张力结构是由一组拉伸构件(电缆)稳定的一组压缩构件(支柱),是创建轻型主动结构的良好基础,因为它可能具有较高的刚度/重量比,并且易于使用可以通过替换结构中的选定构件来嵌入执行器。在这项工作中,开发了一种多轴控制方案来对结构的形状和内力(预应力)进行闭环控制。已构建了一个实验原型,该原型具有6个单向气缸,这些气缸由脉宽调制切换阀控制。演示了扭曲和跨度弯曲方面的形状变化,并使用光学运动跟踪系统来帮助研究结构的动态位置控制。在300mm的跨度范围内,该结构可实现±15°的迎角扭转变化或机翼的±10°跨度弯曲。通过同时控制结构的预应力,还可以改变结构的几何刚度。讨论了未来的研究,包括将主动结构嵌入机翼翼型并在风洞中进行测试。

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