飞艇室内实验前控制算法研究

P. Herman, W. Adamski
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引用次数: 1

摘要

本文给出了用广义速度分量表示的设定点控制器在飞艇控制中的应用。针对全驱动水下航行器提出了非线性控制器。然而,在这项工作中,它表明,由于速度变换,相同的控制器可以用于飞艇,并且它能够检测由损失或减少增益系数引起的风险。因此,所示方法为研究某些飞行扰动情况下的控制算法提供了一个有用的工具。值得注意的是,分析进一步深入了解飞艇动力学。通过对飞艇六自由度模型的仿真,验证了所采用控制器的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of control algorithm for airship before indoor experiment
An application of the set-point controller expressed in generalized velocity components for an airship is presented in this paper. The nonlinear controller was proposed originally for fully actuated underwater vehicles. However, in this work it is shown that the same controller can be used for an airship, thanks the velocity transformation, and it is able to detect risk resulting from lost or reduction gain coefficients. Consequently, the shown approach appears an useful tool for investigation of the control algorithm in case of some flight disturbances of motion. It is worth of notice that the analysis gives further insight into the airship dynamics. The performance of the applied controller is tested by simulation on a 6-DOF model of the airship.
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