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Vibration energy harvesting for unmanned aerial vehicles

机译:无人机的振动能量收集

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Unmanned aerial vehicles (UAVs) are a critical component of many military operations. Over the last few decades, the evolution of UAVs has given rise to increasingly smaller aircraft. Along with the development of smaller UAVs, termed mini UAVs, has come issues involving the endurance of the aircraft. Endurance in mini UAVs is problematic because of the limited size of the fuel systems that can be incorporated into the aircraft. A large portion of the total mass of many electric powered mini UAVs, for example, is the rechargeable battery power source. Energy harvesting is an attractive technology for mini UAVs because it offers the potential to increase their endurance without adding significant mass or the need to increase the size of the fuel system. This paper investigates the possibility of harvesting vibration and solar energy in a mini UAV. Experimentation has been carried out on a remote controlled (RC) glider aircraft with a 1.8 m wing span. This aircraft was chosen to replicate the current electric mini UAVs used by the military today. The RC glider was modified to include two piezoelectric patches placed at the roots of the wings and a cantilevered piezoelectric beam installed in the fuselage to harvest energy from wing vibrations and rigid body motions of the aircraft, as well as two thin film photovoltaic panels attached to the top of the wings to harvest energy from sunlight. Flight testing has been performed and the power output of the piezoelectric and photovoltaic devices has been examined.
机译:无人机是许多军事行动的重要组成部分。在过去的几十年中,无人机的发展使飞机越来越小。随着称为微型无人机的小型无人机的发展,已经出现了涉及飞机耐久性的问题。微型无人机的续航能力存在问题,因为可以整合到飞机上的燃油系统尺寸有限。例如,在许多电动微型无人机的总质量中,很大一部分是可充电电池电源。对于微型无人机而言,能量收集是一项有吸引力的技术,因为它具有增加其耐用性的潜力,而不会增加质量,也无需增加燃料系统的尺寸。本文研究了小型无人机中收集振动和太阳能的可能性。实验是在机翼跨度为1.8 m的遥控(RC)滑翔机上进行的。选择这架飞机是为了复制当今军方使用的当前电动微型无人机。对RC滑翔机进行了修改,使其包括两个放置在机翼根部的压电片和一个安装在机身中的悬臂式压电梁,以从机翼的振动和飞机的刚体运动中收集能量,以及连接到其上的两个薄膜光伏板机翼的顶部从阳光中收集能量。已经进行了飞行测试,并检查了压电和光伏设备的功率输出。

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