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Decentralized H control for air traffic flow networks modeled by a class of compartmental systems

机译:一类车厢系统建模的空中交通流网络的分散H 控制

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In this paper, we study the decentralized H control problem for air traffic flow (ATF) networks. By dividing the airspace into a number of interconnected regions, we first characterize the traffic flow dynamics by means of a compartmental system approach, and formulate the ATF control problem in a decentralized way, where the controller gain matrix is required to be diagonal and element-restricted. To solve the problem, a novel characterization is presented to ensure that the closed-loop system is asymptotically stable with a prescribed H performance. Then, a necessary and sufficient condition for the existence of a required controller is proposed and an iterative linear matrix inequality approach is further developed to solve the design condition. Finally, a simple ATF network is used to show the applicability of the obtained results.
机译:在本文中,我们研究了空中交通流量(ATF)网络的分散H 控制问题。通过将空域划分为多个相互连接的区域,我们首先通过隔间系统方法表征交通流动力学,并以分散的方式制定ATF控制问题,其中要求控制器增益矩阵为对角线和元素-受限制的。为了解决该问题,提出了一种新颖的表征,以确保闭环系统在规定的H 性能下渐近稳定。然后,提出了所需控制器存在的充要条件,并进一步发展了迭代线性矩阵不等式方法来解决设计条件。最后,使用一个简单的ATF网络来显示所获得结果的适用性。

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