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ACTUATION MECHANISM CONTROL IN A MORPHING APPLICATION WITH A FULL-SCALED PORTION OF AN AIRCRAFT WING

机译:飞机机翼全尺寸部分在变形应用中的动作机理控制

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摘要

The paper exposes the design, implementation and experimental testing of the actuation mechanism control system for a morphing wing experimental model based on a full-scaled portion of an aircraft wing equipped with an aileron. An adaptive skin made from carbon fiber composite materials was mounted on the upper surface and positioned between 20% and 65% of the wing chord. Two actuation lines, each with two similar miniature electromechanical actuators, were installed inside the wing and used to deform the flexible upper surface in order to improve the flow quality on the upper surface by modifying the position of the transition point from laminar to turbulence. On each actuator was attached a Linear Variable Differential Transformer (LVDT) providing its position in mm. Three control loops (a torque and two for position) were designed and implemented. The feedback sensors for the first position control loop were the hall sensors, while the second position control loop used the signals from LVDT. The second position control loop has been imposed because of the plays inside the actuation mechanism. Each actuation motor has been connected to a power amplifier implementing the torque and the first position controllers; the second position control loop was independently programmed.
机译:本文介绍了基于装备有副翼的机翼全尺寸部分的变形机翼实验模型的致动机构控制系统的设计,实现和实验测试。由碳纤维复合材料制成的自适应蒙皮安装在上表面,并位于翼弦的20%至65%之间。在机翼内部安装了两条带有两个类似的微型机电执行器的执行管线,用于使柔性上表面变形,以便通过修改从层流到湍流的过渡点的位置来改善上表面的流动质量。在每个执行器上均附有线性可变差动变压器(LVDT),以毫米为单位提供其位置。设计并实现了三个控制环(一个转矩和两个用于位置的回路)。第一个位置控制回路的反馈传感器是霍尔传感器,而第二个位置控制回路使用LVDT的信号。由于执行机构内部的游隙,已施加了第二位置控制环。每个致动马达已连接至实现扭矩和第一位置控制器的功率放大器。第二个位置控制环是独立编程的。

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