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Aircraft course correction for wind and fuzzy logic course intercept profile based upon accuracy and efficiency

机译:基于精度和效率的风向和模糊逻辑航向截距剖面的飞机航向校正

摘要

An aircraft autopilot system provides a wind correction angle which is added to the desired course to provide commanded heading, the wind correction angle being generated as a proportional and integral function of ground track error. When the aircraft is off its desired course, it can be returned to the desired course by means of a course intercept angle, added to the desired course, to provide a corrected commanded course, the course intercept angle being a proportional function of the perpendicular error (the lateral distance of the aircraft from the original course) suitably limited to some angle within 90° of the desired course. The course correction angle may be generated as a proportion of the perpendicular course error determined by the degree of importance of accuracy, and may be switched over to a course directly toward a waypoint in dependence upon the importance of efficiency. The course intercept angle may be a variable proportion of the perpendicular error as a function of the importance of accuracy, and the limits on the intercept angle determined by the relative importance of efficiency.
机译:飞机自动驾驶系统提供风向校正角,该风向校正角被添加到所需航向以提供指令的航向,风向校正角是作为地面航迹误差的比例和积分函数而生成的。当飞机偏离其期望航向时,可以通过增加到期望航向的航向截距角将其返回到期望航向,以提供校正后的命令航向,该航向截距角是垂直误差的比例函数(飞机距原航线的横向距离)适当地限制在90°以内的某个角度所需的课程。航向校正角可以作为由精度的重要程度确定的垂直航向误差的比例生成,并且可以根据效率的重要性而直接切换到航路点的航向。航迹截距角可以是垂直误差的可变比例,它取决于精度的重要性,而截距角的限制则取决于效率的相对重要性。

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