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基于STM32的四旋翼无人机控制系统设计 被引量:12
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作者 丁电宽 赵晨浩 贾天光 《现代电子技术》 2021年第19期113-118,共6页
为提升四旋翼无人机的控制性能和抗干扰能力,设计基于STM32的四旋翼无人机控制系统。控制系统由遥控装置和四轴飞控两部分组成。其中,飞控核心为STM32F407处理器,惯性传感单元采用MPU6050传感器,定高测量采用超声波HC-SR04模块,遥控通... 为提升四旋翼无人机的控制性能和抗干扰能力,设计基于STM32的四旋翼无人机控制系统。控制系统由遥控装置和四轴飞控两部分组成。其中,飞控核心为STM32F407处理器,惯性传感单元采用MPU6050传感器,定高测量采用超声波HC-SR04模块,遥控通信选用2.4 GHz无线通信模块;遥控装置由STM32F103处理器、nRF24L01无线传输模块和遥感电位器组成。系统通过遥控装置实时操作四轴飞控及定高。通过测试平台的调试可知,四轴飞控能快速准确地响应遥控装置的指令,顺利定位相应的高度,说明所设计系统具有较好的控制效果、较强的抗干扰能力。 展开更多
关键词 无人机制系统 旋翼无人机 定高测量 装置 四轴飞控 姿态解算 PID
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高压线巡线飞行器的研究与设计 被引量:1
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作者 郭佳琪 吴杰 蒋一琦 《南京工程学院学报(自然科学版)》 2012年第1期39-42,共4页
基于巡线飞行器的概念和对四轴飞行器稳定性、可控性方面的深入了解,简单设计了该飞行器的样品,并对此提出了一种四轴巡线飞行器的解决方案.巡线飞行器可以在地形复杂,自然环境恶劣的地区进行巡线,与以往的巡线方式相比更为先进和高效,... 基于巡线飞行器的概念和对四轴飞行器稳定性、可控性方面的深入了解,简单设计了该飞行器的样品,并对此提出了一种四轴巡线飞行器的解决方案.巡线飞行器可以在地形复杂,自然环境恶劣的地区进行巡线,与以往的巡线方式相比更为先进和高效,是一种可行的巡线手段. 展开更多
关键词 高压线巡线 四轴飞控 行器
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H_∞ control of an overactuated tilt rotors quadcopter 被引量:1
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作者 Ahmed ALKAMACHI Ergun ERCELEBI 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第3期586-599,共14页
In recent years,unmanned aerial vehicles(UAVs)have acquired an increasing interest due to their wide range of applications in military,scientific,and civilian fields.One of the quadcopter limitations is its lack of fu... In recent years,unmanned aerial vehicles(UAVs)have acquired an increasing interest due to their wide range of applications in military,scientific,and civilian fields.One of the quadcopter limitations is its lack of full actuation property which limits its mobility and trajectory tracking capabilities.In this work,an overactuated quadcopter design and control,which allows independent tilting of the rotors around their arm axis,is presented.Quadcopter with this added tilting mechanism makes it possible to overcome the aforementioned mobility limitation by achieving full authority on torque and force vectoring.The tilting property increases the control inputs to 8(the 4 propeller rotation speed plus the 4 rotor tilting angles)which gives a full control on the quadcopter states.Extensive mathematical model for the tilt rotor quadcopter is derived based on the Newton-Euler method.Furthermore,the feedback linearization method is used to linearize the model and a mixed sensitivity H∞optimal controller is then designed and synthesized to achieve the required performance and stability.The controlled system is simulated to assure the validity of the proposed controller and the quadcopter design.The controller is tested for its effectiveness in rejecting disturbances,attenuating sensor noise,and coping with the model uncertainties.Moreover,a complicated trajectory is examined in which the tilt rotor quadcopter has been successfully followed.The test results show the supremacy of the overactuated quadcopter over the traditional one. 展开更多
关键词 feedback linearization H∞controller Newton-Euler method overactuated quadcopter robust control
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