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Sensor Placement in LTI Systems with Polytopic Uncertainty via Convex Optimization

机译:通过凸优化具有多粒管不确定性LTI系统的传感器放置

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In this paper, the problem of sensor placement in linear time-invariant systems subject to polytopic uncertainty is considered. The main objective is to design a fixed-order controller to obtain a satisfactory H_∞ performance with minimum number of sensors. The problem is formulated as an optimization problem based on the minimization of the cardinality of a special matrix of the controller subject to some H_∞ constraints. Then, the problem is approximated to a convex optimization by means of some slack matrices and the relaxation of cardinality by an iterative weighted l_1 norm. The proposed approach is applied to the problem of phasor measurement unit placements in IEEE 14-bus test system.
机译:在本文中,考虑了经受多种子质不确定性的线性时间不变系统中的传感器放置问题。主要目的是设计固定控制器,以获得令人满意的H_∞性能,具有最小数量的传感器。根据控制器受到一些H_∞约束的特殊矩阵的最小化的最小化,将问题作为优化问题。然后,通过一些松弛矩阵和通过迭代加权L_1标准的基数和基数松弛来近似于凸优化。所提出的方法适用于IEEE 14总线测试系统中的量相测量单元放置问题。

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