将平面运动规划扩展到非平面系统。用Maple制作飞机模型的实验

F. Ollivier
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引用次数: 3

摘要

如果忽略与空气动力学有关的一些术语,飞机模型可能被认为是平坦的。Maple的计算实验表明,在某些情况下,当应用于非平面模型时,适当设计的反馈允许遵循这样的轨迹。然而,有些机动可能很难甚至不可能实现这种平近似。在本文中,我们提出了一个迭代过程来计算一个更容易实现的轨迹,从平坦的参考轨迹开始。更准确地说,平面模型中被忽略的未知项使用前一步获得的值进行迭代重新评估。这个过程可以被解释为一种新的轨迹参数化,它使用了无穷多的导数,这种性质可以被称为广义平坦性。我们说明了这种方法在日益困难的飞行条件下的针对性,从单引擎飞行到副翼滚转。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extending Flat Motion Planning to Non-flat Systems. Experiments on Aircraft Models Using Maple
Aircraft models may be considered as flat if one neglects some terms associated to aerodynamics. Computational experiments in Maple show that in some cases a suitably designed feed-back allows to follow such trajectories, when applied to the non-flat model. However some maneuvers may be hard or even impossible to achieve with this flat approximation. In this paper, we propose an iterated process to compute a more achievable trajectory, starting from the flat reference trajectory. More precisely, the unknown neglected terms in the flat model are iteratively re-evaluated using the values obtained at the previous step. This process may be interpreted as a new trajectory parametrization, using an infinite number of derivatives, a property that may be called generalized flatness. We illustrate the pertinence of this approach in flight conditions of increasing difficulties, from single engine flight, to aileron roll.
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