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Mach number virtual sensor for civil aircraft extended guidance navigation and control

机译:用于民用飞机的马赫数虚拟传感器扩展制导导航和控制

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This paper proposes an airspeed virtual sensor to extend the guidance navigation and control functions of an aircraft. The main idea is to exploit the indirect measurement of the aerodynamic forces applying on a control surface which are clearly related to the aircraft airspeed. Focusing on those aircraft equipped with a Fly By Wire system, at least one actuator is installed on each of the control surfaces; the actuators operate the surface by fighting against the aerodynamic forces. Generally speaking, aircraft are designed with a minimum set of control surfaces (one elevator, one rudder and two ailerons) but there are lots of examples of aircraft with redundant control surfaces. To the best of authors’ knowledge, the proposed ”Least Squares – Sliding Mode” estimator is new and it merges two concepts: the least squares, which exploit the available redundant actuator–surfaces systems to minimize the errors, and the sliding mode, that, in finite time, pushes the aircraft airspeed estimation toward the actual value. The algorithm has been applied to real Airbus aircraft flight data set leading to very encouraging preliminary results.
机译:本文提出了一种空速虚拟传感器,以扩展飞机的制导导航和控制功能。主要思想是利用施加在控制面上的空气动力的间接测量,这些空气动力显然与飞机的空速有关。针对那些配备了电传飞行系统的飞机,每个操纵面上至少安装了一个执行器。执行器通过抵抗空气动力来操纵表面。一般而言,飞机的设计带有最少的控制面(一个升降机,一个舵和两个副翼),但是有很多带有冗余控制面的飞机实例。据作者所知,提议的“最小二乘-滑动模式”估计器是新的,它合并了两个概念:最小二乘,它利用可用的冗余执行器-曲面系统来最大程度地减少误差;以及滑动模式,在限定时间内,将飞机空速估算推向实际值。该算法已应用于实际的空中客车飞机飞行数据集,从而产生了令人鼓舞的初步结果。

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