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Analysis of optimal performance of MIMO networked control systems with encoding and packet dropout constraints

机译:用编码和分组丢弃约束分析MIMO网络控制系统的最佳性能

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In this study, optimal performance of the multi-input multi-output networked control systems (NCSs) is analysed. The systems are with a time-delay and channel noise constraints in the forward network channel, and encoding-decoding and quantisation constraints, and packet dropouts in the feedback network channel. By using the Youla parameterisation of a two-degree-of-freedom controller, a new and explicit expression of the optimal performance is derived. The optimal performance is obtained using the method of H-2 norm technique. The results show that the positions and directions of the non-minimum phase zeros and unstable poles of a given plant are related to the optimal tracking error. On the other hand, the optimal tracking error is dependent on channel noise, quantisation noise, encoding-decoding, time-delay, packet dropout probability and other correction factors. Finally, simulation results demonstrate the effectiveness of the proposed control scheme.
机译:在本研究中,分析了多输入多输出网络控制系统(NCS)的最佳性能。该系统具有前向网络信道中的时延和信道噪声约束,以及编码解码和量化约束,以及反馈网络信道中的分组丢失。通过使用双程度自由度控制器的Youla参数,派生了最佳性能的新的和显式表达式。使用H-2规范技术的方法获得最佳性能。结果表明,给定工厂的非最小相零和不稳定极点的位置和方向与最佳跟踪误差有关。另一方面,最佳跟踪误差取决于信道噪声,量化噪声,编码解码,延迟,分组丢失概率和其他校正因子。最后,仿真结果表明了所提出的控制方案的有效性。

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