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Morphing Wing-Tip Open Loop Controller and its Validation During Wind Tunnel Tests at the IAR-NRC

机译:变形翼尖开环控制器及其在IAR-NRC风洞测试期间的验证

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In this project, a wing tip of a real aircraft was designed and manufactured. This wing tip was composed of a wing and an aileron. The wing was equipped with a composite skin on its upper surface. This skin changed its shape (morphed) by use of 4 electrical in-house developed actuators and 32 pressure sensors. These pressure sensors measure the pressures, and further the loads on the wing upper surface. Thus, the upper surface of the wing was morphed using these actuators with the aim to improve the aerodynamic performances of the wing-tip. Two types of ailerons were designed and manufactured: one aileron is rigid (non-morphed) and one morphing aileron. This morphing aileron can change its shape also for the aerodynamic performances improvement. The morphing wing-tip internal structure is designed and manufactured, and is presented firstly in the paper. Then, the modern communication and control hardware are presented for the entire morphing wing tip equipped with actuators and sensors having the aim to morph the wing. The calibration procedure of the wing tip is further presented, followed by the open loop controller results obtained during wind tunnel tests. Various methodologies of open loop control are presented in this paper, and results obtained were obtained and validated experimentally through wind tunnel tests.
机译:在该项目中,设计并制造了真实飞机的翼尖。该机翼尖由机翼和副翼组成。机翼的上表面配备了复合蒙皮。这种皮肤通过使用4个内部开发的电动执行器和32个压力传感器来改变其形状(变形)。这些压力传感器测量压力,并进一步测量机翼上表面的负荷。因此,使用这些致动器使机翼的上表面变形,以提高翼尖的空气动力性能。设计和制造了两种类型的副翼:一种是刚性的(未变形的)副翼,另一种是变形的副翼。这种变形副翼还可以改变其形状,以改善空气动力性能。首先设计并制造了变形翼尖的内部结构。然后,针对配备了旨在使机翼变形的致动器和传感器的整个变形机翼尖端,展示了现代的通信和控制硬件。进一步介绍了机翼尖端的校准程序,随后是在风洞测试期间获得的开环控制器结果。本文介绍了各种开环控制方法,并通过风洞试验获得了获得的结果并进行了实验验证。

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