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首页> 外文期刊>International Journal of Advanced Robotic Systems >Design and Development of a Class of Rotorcraft-Based UAV
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Design and Development of a Class of Rotorcraft-Based UAV

机译:一类基于旋翼机的无人机的设计与开发

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We discuss the development of a mini-quadrotor system and coaxial quadrotor system for indoor and outdoor applications. The attitude control system consists of a stability augmentation system and a modern control approach. To perform an experimental flight test, a PID controller is used to validate our aerodynamic modelling and basic electronics hardware is developed in a simple configuration. We use a low-cost 100 Hz AHRS for inertial sensing, infrared (IR) sensors for horizontal ranging, an ultrasonic sensor for ground ranging and an AVR microcontroller for the flight control computer. A ground control system is developed for the monitoring and gathering of flight data. Based on the modelling and simulation data of the mini-quadrotor system, a flight test is performed and automatic hovering ability is implemented. A collision detection system is one of the important parts of an indoor and outdoor flight test. To overcome the payload limitation of the mini-quadrotor system, we design a coaxial quadrotor ...
机译:我们讨论了用于室内和室外应用的微型四极杆系统和同轴四旋翼系统的开发。姿态控制系统由稳定性增强系统和现代控制方法组成。为了进行实验性飞行测试,使用PID控制器来验证我们的空气动力学模型,并以简单的配置开发基本的电子硬件。我们将低成本的100 Hz AHRS用于惯性感测,将红外(IR)传感器用于水平测距,将超声传感器用于地面测距,并将AVR微控制器用于飞行控制计算机。开发了用于监视和收集飞行数据的地面控制系统。基于微型四极杆系统的建模和仿真数据,进行飞行测试并实现自动悬停功能。碰撞检测系统是室内和室外飞行测试的重要部分之一。为了克服微型四驱系统的有效载荷限制,我们设计了同轴四旋翼飞行器。

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