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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Fault Tolerance Analysis for a Class of Reconfigurable Aerial Hexarotor Vehicles
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Fault Tolerance Analysis for a Class of Reconfigurable Aerial Hexarotor Vehicles

机译:一类可重构的空中航空公司车辆的容错分析

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摘要

Several works have addressed the issue of fault tolerance in multirotors in case of a rotor total failure, particularly their ability to keep full independent control of attitude and altitude. It has been proven that to achieve this, a minimum of six rotors is needed. In this article, the performance of several standard and nonstandard hexarotor structures is analyzed, both for a nominal case (without failure) and in the case where one of the actuators is under failure (incapability to exert thrust). The performance is shown in terms of maximum rotational torque and vertical force that the vehicle can exert. The main contribution of this article is the proposal and analysis of converting these vehicles into reconfigurable ones through the addition of a minimum number of servomotors, to deal with failures and to greatly improve the maneuverability under these conditions, in order to identify the reconfigurable structure with the best performance. An experimental demonstration in an outdoor environment is shown for the proposed reconfigurable structure with best performance in case of a full rotor failure.
机译:在转子总体故障的情况下,几项工程已经解决了多电座电流仪中的容错问题,特别是它们保持完全独立控制态度和高度的能力。已经证明是为了实现这一点,需要至少六个转子。在本文中,分析了几种标准和非标准的链轮结构的性能,用于标称壳体(没有故障),并且在其中一个致动器处于失败的情况下(无法施加推力)。在车辆可以发挥的最大旋转扭矩和垂直力方面示出了性能。本文的主要贡献是通过添加最小数量的伺服电机来处理这些车辆将这些车辆转换为可重新配置的提案和分析,以处理失败,并在这些条件下大大提高机动性,以识别可重新配置结构最好的表现。在全转子故障的情况下,所提出的可重新配置结构示出了室外环境中的实验演示。

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