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A scalable design method for stabilising decentralised controllers for networks of delay-coupled systems

机译:用于稳定延迟耦合系统网络的分散控制器的可扩展设计方法

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A methodology is proposed to design stabilising fixed-order decentralised controllers for interconnected systems with identical nodal dynamics and identical local controllers. The systems considered are linear time invariant (LTI) multiple-input multiple-output retarded type time-delay systems. The closed-loop systems of local controllers and subsystems (nodes) are modelled by a system of delay differential algebraic equations. The proposed approach combines the non-conservative direct optimisation approach towards stabilisation of delay systems with a decoupling transformation. The latter reduces the overall design problem to a robust/simultaneous controller design problem for one parameterised subsystem, where the allowable values of the parameter correspond to eigenvalues of the adjacency matrix of the network graph. By treating the eigenvalues as perturbations, contained in specific intervals or regions in the complex plane determined by the topology of the network, and by optimising the corresponding pseudospectral abscissa using a novel structure exploiting algorithm, we can ensure that the achieved stability property, and the computational complexity of the controller design, are independent of the number of subsystems. A numerical example is presented to validate the proposed approach in MATLAB software.
机译:提出了一种方法,用于为具有相同节点动力学和相同本地控制器的互连系统设计稳定的定序分散控制器。所考虑的系统是线性时不变(LTI)多输入多输出延迟型时滞系统。本地控制器和子系统(节点)的闭环系统由时滞微分代数方程组建模。所提出的方法将非保守直接优化方法与去耦变换相结合,以实现时滞系统的稳定。后者将整个设计问题简化为一个参数化子系统的鲁棒/同时控制器设计问题,其中参数的允许值对应于网络图邻接矩阵的特征值。通过将特征值视为扰动,包含在网络拓扑确定的复杂平面中的特定区间或区域中,并通过使用新颖的结构开发算法优化相应的伪谱横坐标,我们可以确保获得的稳定性和控制器设计的计算复杂度与子系统的数量无关。数值实例验证了该方法在MATLAB软件中的有效性。

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