Modelling and control of a hexa-copter

R. Baranek, F. Solc
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引用次数: 46

Abstract

The paper describes mathematical model and control algorithm for hexa-copter flying machine. Hexa-copter is a member of multi-rotor flying devices which consist of multiple fixed rotors attached to a simple mechanical construction. Hexa-copter itself consists of 6 six rotors with fixed pitch blades. The main property of such devices is their instability. Thus the control algorithm is non-trivial and its tuning is relatively difficult. Since incorrectly tuned control algorithm can cause device damage the use of mathematical model for testing is appropriate. The model of flying hexa-copter is derived using classical Newton laws. As the perfect model would be complicated, some approximations have been done. Using the state variables of model and linearization a control algorithm is designed. Then the results of control algorithm are presented.
六轴直升机的建模与控制
介绍了六旋翼飞行器的数学模型和控制算法。六轴直升机是多旋翼飞行装置的一员,它由多个固定旋翼附着在一个简单的机械结构上。六轴直升机本身由6个具有固定螺距叶片的6个旋翼组成。这种装置的主要特性是不稳定。因此,控制算法具有非平凡性,其整定也相对困难。由于不正确的调谐控制算法可能导致器件损坏,因此使用数学模型进行测试是合适的。利用经典牛顿定律推导了六轴飞行器的飞行模型。由于完美的模型是复杂的,所以我们做了一些近似。利用模型状态变量和线性化方法设计了控制算法。然后给出了控制算法的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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