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仿鸟扑翼飞行器飞行控制方法综述

Review of the Flight Control Method of a Bird-like Flapping-Wing Air Vehicle.

作者信息

Fang Xiaoqing, Wen Yian, Gao Zhida, Gao Kai, Luo Qi, Peng Hui, Du Ronghua

机构信息

College of Automotive and Mechanical Engineering, Changsha University of Science & Technology, Changsha 410114, China.

College of Electrical and Information Engineering, Changsha University of Science & Technology, Changsha 410114, China.

出版信息

Micromachines (Basel). 2023 Jul 31;14(8):1547. doi: 10.3390/mi14081547.

Abstract

The Bird-like Flapping-wing Air Vehicle (BFAV) is a robotic innovation that emulates the flight patterns of birds. In comparison to fixed-wing and rotary-wing air vehicles, the BFAV offers superior attributes such as stealth, enhanced maneuverability, strong adaptability, and low noise, which render the BFAV a promising prospect for numerous applications. Consequently, it represents a crucial direction of research in the field of air vehicles for the foreseeable future. However, the flapping-wing vehicle is a nonlinear and unsteady system, posing significant challenges for BFAV to achieve autonomous flying since it is difficult to analyze and characterize using traditional methods and aerodynamics. Hence, flight control as a major key for flapping-wing air vehicles to achieve autonomous flight garners considerable attention from scholars. This paper presents an exposition of the flight principles of BFAV, followed by a comprehensive analysis of various significant factors that impact bird flight. Subsequently, a review of the existing literature on flight control in BFAV is conducted, and the flight control of BFAV is categorized into three distinct components: position control, trajectory tracking control, and formation control. Additionally, the latest advancements in control algorithms for each component are deliberated and analyzed. Ultimately, a projection on forthcoming directions of research is presented.

摘要

仿鸟扑翼飞行器(BFAV)是一种模仿鸟类飞行模式的机器人创新产品。与固定翼和旋翼飞行器相比,BFAV具有诸如隐身性、更高的机动性、强大的适应性和低噪音等卓越特性,这些特性使BFAV在众多应用中具有广阔前景。因此,在可预见的未来,它代表了飞行器领域一个至关重要的研究方向。然而,扑翼飞行器是一个非线性且不稳定的系统,这给BFAV实现自主飞行带来了重大挑战,因为使用传统方法和空气动力学很难对其进行分析和表征。因此,飞行控制作为扑翼飞行器实现自主飞行的一个主要关键因素,受到了学者们的广泛关注。本文阐述了BFAV的飞行原理,接着对影响鸟类飞行的各种重要因素进行了全面分析。随后,对BFAV飞行控制的现有文献进行了综述,并将BFAV的飞行控制分为三个不同的部分:位置控制、轨迹跟踪控制和编队控制。此外,还对每个部分的控制算法的最新进展进行了探讨和分析。最后,对未来的研究方向进行了展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79a4/10456679/cc33759b7fe3/micromachines-14-01547-g001.jpg

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