飞艇空气动力学。基本飞行参数的简单控制

F. Jelenciak, M. Gerke, U. Borgolte, P. Bahnik
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引用次数: 1

摘要

本文描述了一个简单的控制基本飞行变量的一个无人飞艇,如飞艇的飞行高度和飞艇的方位角或飞行方向。为此,所有控制器都是在飞艇飞行力学非线性数学模型的基础上设计的,该模型由PEM(投影等效法)得到[13]。所有的控制器都设计为“静音”飞艇飞行模式。“静音”飞行模式意味着,在飞行期间,机载飞艇控制器补偿关于所有三个飞艇轴的振荡。通过这些控制器,可以达到所需的控制器精度,从而保证“静音”飞艇飞行模式,这是照片或视频记录或其他机载测量任务所必需的。文中不仅给出了仿真结果,还给出了应用该控制器实现的实际飞艇飞行实验的实测数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Airship aerodynamics - Simple control of the elementary flight parameters
This article describes a simple control of elementary flight variables for an unmanned airship such like airship flight altitude and airship azimuth or flight direction. For this purpose were all controllers designed on the basis of nonlinear mathematical model of airship flight mechanics which was obtained by PEM (Projection Equivalent Method) [13]. All controllers were designed for “silent” airship flight mode. “Silent” flight mode means, that during flight on-board airship controllers compensate oscillations about all three airship axes. By means of these controllers, it is possible to achieve required controller precision and thereby to guarantee “silent” airship flight mode which is necessary for photo or video recording or other airborne measurement tasks. This paper not only shows simulation results, but also provides measured data from real experimental airship flights which were realized by applying these controllers.
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