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Hexacopter fault tolerant actuator allocation analysis for optimal thrust

机译:直升机的容错执行器分配分析,以获取最佳推力

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Recently, it was shown that an hexagon shaped hexarotor vehicle with tilted rotors, is capable of fault tolerant attitude and altitude control. In this work, we propose a strategy to select the signals commanded to each rotor in order to achieve a desired torque and vertical force. The proposed strategy is optimal in the sense that minimizes the maximum force exerted by the rotors. A comparison with the commonly used strategy based upon the Moore-Penrose pseudoinverse is carried out. It is shown that, with the optimal strategy proposed here, maneuverability is improved, because the new method takes into account the actuators constraints. Although the optimal strategy is computationally more demanding than the classical method, the additional computational burden is not significant when both strategies are compared in a real application. To show this, both algorithms were programmed in an autopilot based on an ARM Cortex M3 microcontroller, and the experimental results are presented.
机译:最近,显示出具有倾斜的转子的六边形六旋翼飞行器能够容错姿态和高度控制。在这项工作中,我们提出一种策略来选择命令给每个转子的信号,以实现所需的扭矩和垂直力。在最小化转子施加的最大力的意义上,所提出的策略是最佳的。与基于Moore-Penrose伪逆的常用策略进行了比较。结果表明,采用本文提出的最优策略,由于新方法考虑了执行机构的约束,因此可操作性得到了改善。尽管最佳策略在计算上比传统方法要高,但在实际应用中比较这两种策略时,额外的计算负担并不明显。为了说明这一点,两种算法都基于ARM Cortex M3微控制器在自动驾驶仪中进行了编程,并给出了实验结果。

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