搜索资源列表
quadrotor_dynamics
- 四轴飞行器Matlab仿真分析,涉及四轴飞行器主要部件如Motor,camera,电池等,分析包括稳定性、动力等
FlightControlAlgorithm-analysis 四轴飞行器的算法研究
- 四轴飞行器的算法研究,MK用的比较巧妙,主要是通过实时融合和长期融合。-Algorithm axis aircraft, MK with the more subtle, mainly through the real-time integration and long-term integration.
AeroQuad_v1[1].5
- 基于Arduino平台的 四轴飞行器飞行控制源码 开发平台和环境是Arduino -quadrocopter flight control source code based on the Arduino platform
arm_kalman
- kalman算法,这是四轴飞行器主要的算法之一-kalman algorithm, this algorithm is one of the major axis aircraft
arm_kalman
- kalman算法,这是四轴飞行器的主要算法之一,这是kalman.h文件-kalman algorithm, which is one of the main algorithms axis aircraft, which is kalman.h file
e2qaq2e
- 用欧拉角表示的飞行器姿态运动学方程在大角度时会出现奇异现象,而采用四元数来 表示,则可以避免这个问题。因此,飞行器运动学方程都采用四元数来表示。而飞行器的控 制规律都采用欧拉角来表示,且欧拉角表示姿态角比起四元数更加形象,更易于被人理解, 所以,在飞行器控制系统仿真设计的时候,需要四元数与欧拉角之间的转换。给定1 个欧拉 角,对应1 个四元数,因而欧拉角到四元数之间这种一一对应的关系使得欧拉角到四元数的 转换比较容易。但是,1 个四元数通常有1 个或者2 个欧拉角与之对应,它
MWCv2.2
- 四轴飞行器控制程序,内含姿态解算与pid算法,并由本人亲自注释,清晰易懂-Four aircraft control procedures, including attitude solution with pid algorithm, by personally comment, lucid
Kalman-filter
- 卡尔曼滤波算法,主要用于处理从加速度传感器和陀螺仪获得的数据,从而得到一个真实的角度。此算法可以用在四轴飞行器,自平衡小车等方面。-Kalman filtering algorithm, mainly for processing data obtained from the acceleration sensor and the gyro, to obtain a true perspective. This algorithm can be used in four-axis aircraf
ANO-MR-F1
- 四轴飞行器程序,含陀螺仪姿态角显示及其控制,稳定易懂,运用PID算法,卡尔曼滤波-Four axis aircraft program, display containing gyro attitude and attitude control, stable and easy to understand, the use of PID algorithm, Calman filter
sizhouDIY
- 用于四轴飞行器DIY初学者,让你从初学者变成入门者精通者-For four axis aircraft DIY beginner ,Let you beginners to grasp savvy
quadrotorsim
- 上传的 是对四轴飞行器控制系统的仿真,已经验证过(Upload the simulation of the four axis aircraft control system, has been verified)
四旋翼飞行器动力学建模与简单控制
- 基于Simulink的四旋翼飞行器动力学建模与简单PID控制.有相关文献。(Dynamic modeling and simple PID control of four rotor aircraft based on Simulink.)