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Input-to-State Stability for Networked Predictive Control With Random Delays in Both Feedback and Forward Channels

机译:在反馈和前向通道中具有随机延迟的网络预测控制的输入状态稳定性

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The input-to-state stability (ISS) for a class of networked control systems with random delays and packet dropouts appearing simultaneously in both feedback and forward channels is thoroughly investigated in this paper. A new network predictive controller scheme is introduced in order to compensate the effect of transmission delays and packet dropouts. By making use of the small gain theorem, the stability criteria of the considered new system are derived. The proposed stability conditions are fairly easy to check and considerably less conservative than the existing ones. These criteria reveal that, if the original linear systems are controllable and observable, then, by adopting the proposed networked-predictive-control scheme, the ISS properties can be guaranteed for the overall system despite the effects of networking such as transmission bounded delays, packet dropouts, and possible disturbance inputs. When no disturbance inputs occur, the system stability can be guaranteed for random delays with a certain bound or else for any large constant delays. Results for two illustrative examples are given to validate the proposed control scheme, the second one being a laboratory-scale dc-motor rig.
机译:本文对一类具有随机延迟和丢包同时出现在反馈和前向通道中的网络控制系统的输入状态稳定性(ISS)进行了深入研究。为了补偿传输延迟和数据包丢失的影响,引入了一种新的网络预测控制器方案。通过使用小增益定理,得出了所考虑的新系统的稳定性准则。所提出的稳定性条件相当容易检查,并且与现有条件相比保守性大大降低。这些标准表明,如果原始线性系统是可控和可观察的,则通过采用建议的网络预测控制方案,尽管存在诸如传输受限延迟,分组等网络影响,但仍可为整个系统保证ISS属性。跌落和可能的干扰输入。当没有干扰输入发生时,对于具有一定界限的随机延迟或任何较大的恒定延迟,可以保证系统的稳定性。给出了两个说明性示例的结果,以验证所提出的控制方案,第二个示例是实验室规模的直流电动机设备。

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