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A New Compensator Design for Optimal Static Output Feedback Control Across a Communication Channel Subject to Random Packet Dropouts

机译:一种新的补偿器设计,用于最佳静态输出反馈控制,通过随机数据包丢失

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摘要

This paper studies compensation of networked control across an unreliable communication channel subject to random packet dropouts. By posing it as a two decision-variable optimization problem, the control and compensation for static output feedback LQR are unified by the proposed design. New governing equations are derived for the controller and the compensator satisfying optimality conditions concurrently. Also presented is a convergent algorithm that solves these equations for the optimal gains. Finally, to validate the design and verify its effectiveness, a numerical example is given on which a computer simulation is conducted to compare its performance against that of three other existing schemes. The simulation results demonstrate its saliency among the four methods.
机译:本文研究了在不可靠的通信通道上进行网络控制的补偿,这些通道受到随机数据包丢失。通过将其作为两个决策变量优化问题构成,静态输出反馈LQR的控制和补偿由所提出的设计统一。新的控制方程式用于控制器和补偿器同时满足最佳条件。还提供了一种收敛算法,可以解决这些方程以获得最佳收益。最后,为了验证设计并验证其有效性,给出了一个数字示例,在该数字示例上,进行计算机仿真以将其性能与三个其他现有方案的性能进行比较。仿真结果表明了四种方法中的显着性。

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