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Multi-input–multi-output system experimental validation of model-free control and virtual reference feedback tuning techniques

机译:无模型控制和虚拟参考反馈调整技术的多输入多输出系统实验验证

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This study proposes data-driven model-free adaptive control (MFAC), model-free control (MFC) and virtual reference feedback tuning (VRFT) techniques applied to the control of a representative non-linear multi-input-multi-output (MIMO) system represented by the twin rotor aerodynamic system (TRAS). These data-driven techniques are implemented for both a single MIMO controller and two separately designed single-input-single-output controllers running in parallel for azimuth and pitch control. The three techniques are implemented as MFAC and MFC algorithms and as linear controllers tuned by VRFT. The performance of the three data-driven MIMO control system structures is compared systematically on the basis of the experimental results in terms of the values of the sum of mean squared control errors measured on TRAS equipment.
机译:这项研究提出了数据驱动的无模型自适应控制(MFAC),无模型控制(MFC)和虚拟参考反馈调整(VRFT)技术,用于控制代表性的非线性多输入多输出(MIMO)以双转子空气动力学系统(TRAS)为代表的系统。这些数据驱动技术既可用于单个MIMO控制器,又可用于并行运行以进行方位角和俯仰控制的两个单独设计的单输入单输出控制器。这三种技术分别作为MFAC和MFC算法以及由VRFT调整的线性控制器实现。根据实验结果,系统比较了三种数据驱动的MIMO控制系统结构的性能,并根据在TRAS设备上测得的均方根控制误差之和的值进行了比较。

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