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Adaptive Sliding Control of Six-DOF Flight Simulator Motion Platform

机译:六自由度飞行模拟器运动平台的自适应滑行控制

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摘要

There is proposed an adaptive sliding controller in task space on the base of the linear Newton-Euler dynamic equation of motion platform in a six-DOF flight simulator. The uncertain parameters are divided into two groups: the constant and the time-varying. The controller identifies constant uncertain parameters using nonlinear adaptive controller associated with elimination of the influences of time-varying uncertain parameters and compensation of the external disturbance using sliding control. The results of numerical simulation attest to the capability of this control scheme not only to, with deadly accuracy, identify parameters of motion platform such as load,inertia moments and mass center, but also effectively improve the robustness of the system.
机译:在六自由度飞行模拟器中,基于运动平台的线性牛顿-欧拉动力学方程,在任务空间中提出了一种自适应滑动控制器。不确定参数分为两组:常数和时变。控制器使用非线性自适应控制器识别恒定的不确定参数,该非线性自适应控制器消除了时变不确定参数的影响,并使用滑动控制补偿了外部干扰。数值仿真结果证明了该控制方案的能力,不仅具有致命的准确性,还可以识别运动平台的参数,例如载荷,惯性矩和质心,而且还可以有效地提高系统的鲁棒性。

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