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Packetized MPC with dynamic scheduling constraints and bounded packet dropouts

机译:具有动态调度约束和受限数据包丢失的打包MPC

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摘要

We study a Networked Control System architecture which uses a communication network in the controller-actuator links. The network is affected by packet dropouts and allows access to only one plant input node at each time instant. This limits control performance significantly. To mitigate these limitations we propose a control and network protocol co-design method. Succinctly, the underlying features of the proposed method are as follows: a sequence of predicted optimal control values over a finite horizon, for an optimally chosen input node, is obtained using Model Predictive Control ideas; the entire resulting sequence is sent to the chosen input node; a smart actuator is used to store the predictions received and apply them accordingly. We show that if the number of consecutive packet dropouts is uniformly bounded, then partial nonlinear gain l_2 stability and also a more traditional linear gain l_2 stability can be ensured via appropriate choice of design parameters and the right assumptions. Whilst our results apply to general nonlinear discrete-time multiple input plants affected by exogenous disturbances, for a disturbance-free case we prove that Global Asymptotic Stability follows from our main result. Moreover, we show that by imposing stronger assumptions, Input-to-State Stability is achievable as well. Finally we demonstrate the potential of the proposed method via simulations.
机译:我们研究了一种网络控制系统架构,该架构在控制器-执行器链路中使用通信网络。网络受数据包丢失的影响,并且每个时刻仅允许访问一个工厂输入节点。这大大限制了控制性能。为了减轻这些限制,我们提出了一种控制和网络协议的协同设计方法。简而言之,所提出的方法的基本特征如下:使用模型预测控制思想,获得对于最优选择的输入节点,在有限范围内的一系列预测最优控制值;整个结果序列发送到选定的输入节点;智能执行器用于存储收到的预测并相应地应用它们。我们表明,如果连续丢包的数量均匀受限制,则可以通过适当选择设计参数和正确的假设来确保部分非线性增益l_2稳定性以及更传统的线性增益l_2稳定性。虽然我们的结果适用于受外源干扰影响的一般非线性离散时间多输入设备,但对于无干扰情况,我们证明了全局渐近稳定性源于我们的主要结果。此外,我们表明,通过施加更强的假设,输入状态稳定性也可以实现。最后,我们通过仿真演示了该方法的潜力。

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