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A Smart Icing Detection System for Any Location on the Outer Aircraft Surface

机译:外飞机表面上任何位置的智能结冰检测系统

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Given approximately one million small and light aircraft in operation worldwide, icing detection and icing quantification of in-flight icing are still an open research topic. Despite technical means are available to de-ice on ground, there is a lack of a suitable control system based on sensor data to de-ice while the aircraft is airborne. Most often, it is still task of the pilot to visually inspect the icing status of the airfoil and/or other critical parts of the aircraft such as engine air intakes, which distracts the flight crew from flying the aircraft especially in IMC conditions. Based on preliminary simulation and tests in 2014 in a collaborative research project lasting from 2015 until 2018, the technology of energy self-sustaining, wireless, self-adhesive smart sensors for industrial sensing in an aerodynamically critical environment (i.e. wind turbines) was further investigated to fulfil general aviation requirements. Prototype hardware setups have been designed and built for application on aircraft. In test flights carried out in Scotland in late 2017, the functionality of the system could be demonstrated. It could be shown that a wireless, energy self-sustaining detection system for early icing can be implemented based on currently available technologies and components. Additionally, it could be shown that detection sensitivity is sufficient to detect ice at very thin layers.
机译:在全球范围内运行,鉴定了大约一百万小型和轻型飞机,冰布检测和糖化量化的飞行锦冰仍然是一个开放的研究主题。尽管技术手段可用于脱色地面,但缺乏基于传感器数据的合适的控制系统,而飞机是空降的。最常见的是,飞行员的任务仍然是目视检查翼型的结冰状态和/或飞机的其他关键部分,如发动机进气口,这会分散飞行机组,特别是在IMC条件下飞行飞机。基于2014年的初步仿真和测试,在2015年持续到2018年之前,进一步研究了用于在空气动力学临界环境(即风力涡轮机)中的能源自我维持,无线,自粘智能传感器的技术技术(即风力涡轮机)技术履行一般航空要求。原型硬件设置已经设计和构建用于在飞机上的应用。在2017年底在苏格兰开展的测试航班中,可以证明系统的功能。可以基于当前可用的技术和组件来实现用于早期结冰的无线的能量自我维持检测系统。另外,可以示出检测灵敏度足以在非常薄的层处检测冰。

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