Autonomous aerial delivery vehicles have gained significant interest in the last decade. This has been enabled by technological advancements in aerial manipulators and novel grippers with enhanced force to weight ratios. Furthermore, improved control schemes and vehicle dynamics are better able to model the payload and improved perception algorithms to detect key features within the unmanned aerial vehicle's (UAV) environment. In this survey, a systematic review of the technological advancements and open research problems of autonomous aerial delivery vehicles is conducted. First, various types of manipulators and grippers are discussed in detail, along with dynamic modelling and control methods. Then, landing on static and dynamic platforms is discussed. Subsequently, risks such as weather conditions, state estimation and collision avoidance to ensure safe transit is considered. Finally, delivery UAV routing is investigated which categorises the topic into two areas: drone operations and drone-truck collaborative operations.
翻译:过去十年来,自主航空运载工具引起了极大的兴趣,这得益于航空操纵机和新型牵引机的技术进步,其功率与重量比率的比重有所提高;此外,改进的控制计划和车辆动态更能模拟有效载荷和改进的感知算法,以探测无人驾驶航空器(无人驾驶航空器)环境中的关键特征;在这项调查中,对自主航空运载工具的技术进步和公开研究问题进行了系统审查;首先,详细讨论了各种类型的操纵器和牵引器,以及动态建模和控制方法;随后,讨论了在静态和动态平台上着陆的问题;随后,审议了天气条件、状态估计和避免碰撞以确保安全过境等风险;最后,对UAVAV航道的交付进行了调查,将该专题分为两个领域:无人驾驶飞机作业和无人驾驶飞行器协作行动。