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Disturbance rejection for interconnected positive systems and its application to formation control of quadrotors

机译:互联阳性系统的扰动抑制及其在标准运动组的形成控制中的应用

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摘要

This study deals with disturbance rejection of interconnected positive (IP) systems by output feedback laws that are installed as an outer loop of the IP system. Since the IP system without disturbances has a first integral, which is a linear function of the state and takes a constant value along the trajectories, this study utilises this function as an index of detecting the disturbances. Then, dynamic and static disturbance rejection output feedback laws with the first integral are proposed, respectively. Although the pole assignment problem of the IP system with the static output feedback law is not solvable in general, this study reveals that the system matrix of the closed-loop system has a structure called rank-one updated matrices. This special structure implies that the simple eigenvalue zero of the original IP system moves to a stable one by the feedback law while the other stable eigenvalues never move. This study applies these feedback laws to formation control of quadrotors based on IP systems where the dynamics of a quadrotor are linearised to be positive and stable second-order subsystems by dual quaternion techniques. Numerical examples illustrate the quadrotors achieve a designed shape of formation against the disturbances.
机译:本研究涉及通过作为IP系统外循环安装的输出反馈定律来讨论互联的正(IP)系统的扰动。由于没有干扰的IP系统具有第一积分,这是状态的线性函数并沿着轨迹采用恒定值,本研究利用此功能作为检测干扰的指标。然后,分别提出了具有第一积分的动态和静态干扰抑制输出反馈规律。尽管具有静态输出反馈定律的IP系统的极点分配问题通常是常规可解决的,但本研究表明,闭环系统的系统矩阵具有称为RANK-ONE更新矩阵的结构。这种特殊结构意味着原始IP系统的简单特征值零通过反馈法移动到稳定的,而另一个稳定的特征值永远不会移动。本研究将这些反馈规律应用于基于IP系统的二次电位器的形成控制,其中电流电路的动态被线性化为正和稳定的二阶子系统,通过双季度技术。数值示例说明了四轮压力机实现了针对干扰的设计形状。

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