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Fuzzy Logic-Based Control for a Morphing Wing Tip Actuation System: Design Numerical Simulation and Wind Tunnel Experimental Testing

机译:变形翼尖驱动系统的基于模糊逻辑的控制:设计数值模拟和风洞实验测试

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摘要

The paper presents the design, numerical simulation, and wind tunnel experimental testing of a fuzzy logic-based control system for a new morphing wing actuation system equipped with Brushless DC (BLDC) motors, under the framework of an international project between Canada and Italy. Morphing wing is a prime concern of the aviation industry and, due to the promising results, it can improve fuel optimization. In this idea, a major international morphing wing project has been carried out by our university team from Canada, in collaboration with industrial, research, and university entities from our country, but also from Italy, by using a full-scaled portion of a real aircraft wing equipped with an aileron. The target was to conceive, manufacture, and test an experimental wing model able to be morphed in a controlled manner and to provide in this way an extension of the laminar airflow region over its upper surface, producing a drag reduction with direct impact on the fuel consumption economy. The work presented in the paper aims to describe how the experimental model has been developed, controlled, and tested, to prove the feasibility of the morphing wing technology for the next generation of aircraft.
机译:在加拿大和意大利之间的国际项目框架下,本文介绍了一种基于模糊逻辑的控制系统的设计,数值模拟和风洞实验测试,该系统用于配备无刷直流(BLDC)电机的新型变身机翼驱动系统。变形机翼是航空业的首要考虑因素,由于其前景可观,因此可以改善燃油优化性。在这个想法中,我们加拿大的大学团队与来自加拿大以及意大利的工业,研究和大学实体合作,通过使用真实图像的完整部分,进行了一项重大的国际变身翼计划。装有副翼的飞机机翼。目标是构思,制造和测试能够以受控方式变形的实验机翼模型,并以此方式提供层流气流区域在其上表面的扩展,从而产生对燃料直接影响的减阻作用消费经济。本文提出的工作旨在描述如何开发,控制和测试实验模型,以证明变形机翼技术在下一代飞机上的可行性。

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