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首页> 外文期刊>Archives of Computational Methods in Engineering >Pitch and Yaw Angular Motions (Rotations) Control of the 1-DOF and 2-DOF TRMS: A Survey
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Pitch and Yaw Angular Motions (Rotations) Control of the 1-DOF and 2-DOF TRMS: A Survey

机译:1-DOF和2-DOF TRMS的间距和偏航角动术(旋转)控制:调查

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摘要

For several decades, researchers' attention has been directed to the need for air safety. This has been a trailing concern for the engineering community and in particular the control engineers, who, due to the complex nature of aeronautical systems have to creatively grapple with requirements for aircraft safety and comfortability, flexibility, precision, speed and efficiency based on data obtained from such systems. Motivated by the impact modern control systems and modern technologies have on the present aeronautical/aerospace industry, a survey is carried out. It focuses on the nonlinear underactuated couplings of the decoupled Single-Degree-of Freedom and coupled Two-Degree-of-Freedom motion control of the ubiquitous rotorcraft, Twin Rotor Multi-Input Multi-Output System (TRMS) test bed. As a proven benchmark, it is employed for exploring, testing and validating flight control and optimization schemes. It brings to fore the recent developments of control laws, strategies and methods. They are deployed for physical system modelling, stability behavior (exponential and asymptotic), numerical simulations and real-time implementations in modern aerodynamic plants-(systems and technologies). These technologies include helicopters, airplanes, spacecraft, Unmanned Aerial Surveillance Vehicles, as well as main-stream and broad-ranging Multiple-Input Multiple-Output systems with varying degrees of nonlinearities and complexities. Of utmost importance, the methods are first validated on the TRMS test bed using the real-world online sensors' (optical shaft encoders) data.
机译:几十年来,研究人员的注意力已经针对需要对空中安全。这一直是工程领域,特别是控制工程师,谁,由于航空系统的复杂性,有创造性的格斗基于获得的数据对飞机的安全性和舒适性,灵活性,精度,速度和效率的要求尾随关注从这样的系统。受影响的现代控制系统和现代技术的推动下对本航空/航天工业的一项调查进行。它的重点是无处不在的旋翼飞行器,双旋翼多输入多输出系统(TRMS)试验台的去耦自由单度的和联接两自由度的自由度的运动控制的非线性欠驱动耦合。作为成熟的标杆,它被用于探索,测试和验证飞行控制和优化方案。它带给脱颖而出的控制规律,策略和方法最近的事态发展。他们正在部署的物理系统的建模,稳定性行为(指数和渐近),数值模拟和现代空气动力学株植物(系统和技术)的实时实现。这些技术包括直升机,飞机,航天器,无人空中监视车辆,以及主要流和范围广泛的多输入多输出系统具有不同程度的非线性和复杂性。最重要的是,该方法首先对TRMS试验台使用真实世界的在线传感器(光学轴编码器)数据进行了验证。

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  • 来源
    《Archives of Computational Methods in Engineering》 |2021年第3期|1449-1458|共10页
  • 作者单位

    Botswana Int Univ Sci & Technol BIUST Dept Elect Comp & Telecommun Engn Private Bag 16 Palapye Botswana;

    Botswana Int Univ Sci & Technol BIUST Dept Elect Comp & Telecommun Engn Private Bag 16 Palapye Botswana;

    Botswana Int Univ Sci & Technol BIUST Fac Engn & Technol Dept Mech Energy & Ind Engn Private Bag 16 Palapye Botswana;

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