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首页> 外文期刊>Journal of Intelligent and Robotic Systems >Inventing a Biologically Inspired, Energy Efficient Micro Aerial Vehicle
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Inventing a Biologically Inspired, Energy Efficient Micro Aerial Vehicle

机译:发明一种生物启发,节能的微型飞行器

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In recent years, research efforts have focused on the design, development and deployment of unmanned systems for a variety of applications ranging from intelligence and surveillance to border patrol, rescue operations, etc. Micro Aerial Vehicles are viewed as potential targets that can provide agility and accurate small area coverage while being cost-effective and can be easily launched by a single operator. The small size of MAVs allows such flight operations within confined space but the control effectors must provide sufficient maneuverability, while maintaining stability, with only limited sensing capability onboard the platform. To meet these challenges, researchers have long been attracted by the amazing attributes of biological systems, such as those exhibited by birds and insects. Birds can fly in dense flocks, executing rapid maneuvers with g-loads far in excess of modern fighter aircrafts, and yet never collide with each other, despite the absence of air traffic controllers. This paper introduces a novel framework for the design and control of a Micro Air Vehicle. The vehicle’s conceptual design is based on biologically-inspired principles and emulates a dragonfly (Odonata–Anisoptera). A sophisticated multi-layered Hybrid & Linear/Non-Linear controller to achieve extended flight times and improved agility compared to other Rotary and Flapping Wing MAV designs. The paper addresses the design and control features of the proposed QV design and gives an overview on the developmental efforts towards the prototyping of the flyer. The potential applications for such a high endurance vehicle are numerous, including air-deployable mass surveillance in cluster and swarm formations. The disposable nature of the vehicle would help in battle-field deployment as well, where such a MAV would be made available to soldiers for proximity sensing and threat level assessment. Other applications would include search and rescue operations and civilian law-enforcement.
机译:近年来,研究工作集中于无人系统的设计,开发和部署,其应用范围广泛,从情报和监视到边境巡逻,救援行动等。微型飞行器被视为可以提供敏捷性和可靠性的潜在目标。准确的小区域覆盖范围,同时又具有成本效益,并且可以由一个操作员轻松启动。 MAV的体积小,可以在狭窄的空间内进行此类飞行操作,但控制执行器必须在保持稳定的同时提供足够的机动性,同时平台上的感测能力有限。为了应对这些挑战,研究人员长期以来一直被生物系统的惊人属性所吸引,例如鸟类和昆虫所展现的属性。尽管没有空中交通管制员,但鸟类可以在密集的鸟群中飞行,以G载快速执行机动,远远超过了现代战斗机,但从未相互碰撞。本文介绍了一种用于微型飞行器设计和控制的新颖框架。该车的概念设计基于生物学启发的原理,并模仿蜻蜓(Odonata–Anisoptera)。与其他旋翼和拍打翼MAV设计相比,先进的多层混合动力和线性/非线性控制器可延长飞行时间并提高敏捷性。本文介绍了拟议的QV设计的设计和控制功能,并概述了为传单制作原型所做的开发工作。这种高耐久性车辆的潜在应用是众多的,包括在群队和群队中进行空中可部署的大规模监视。车辆的可抛弃性质也将有助于战场部署,在这种情况下,这样的MAV将可用于士兵进行近程感测和威胁水平评估。其他应用将包括搜救行动和民事执法。

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