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首页> 外文期刊>IEEE Transactions on Automatic Control >Observer Design for Nonlinear Networked Control Systems With Persistently Exciting Protocols
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Observer Design for Nonlinear Networked Control Systems With Persistently Exciting Protocols

机译:具有持久令人兴奋协议的非线性网络控制系统观测器设计

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摘要

We study the design of state observers for nonlinear networked control systems (NCSs) affected by disturbances and measurement noise, via an emulation-like approach. That is, given an observer designed with a specific stability property in the absence of communication constraints, we implement it over a network, and we provide sufficient conditions on the latter to preserve the stability property of the observer. In particular, we provide a bound on the maximum allowable transmission interval (MATI) that guarantees an input-to-state stability (ISS) property for the corresponding estimation error system. The stability analysis is trajectory-based, utilizes small-gain arguments, and exploits a persistently exciting property of the scheduling protocols. This property is key in our analysis and allows us to obtain significantly larger MATI bounds in comparison to the ones found in the literature. Our results hold for a general class of NCSs; however, we show that these results are also applicable to NCSs implemented over a specific physical network called WirelessHART (WH). The latter is mainly characterized by its multihop structure, slotted communication cycles, and the possibility to simultaneously transmit over different frequencies. We show that our results can be further improved by taking into account the intrinsic structure of the WH-NCS model. That is, we explicitly exploit the model structure in our analysis to obtain an even tighter MATI bound that guarantees the same ISS property for the estimation error system. Finally, to illustrate our results, we present analysis and numerical simulations for a class of Lipschitz nonlinear systems and high-gain observers.
机译:我们通过仿真方法研究受扰动和测量噪声影响的非线性网络控制系统(NCS)的状态观察者的设计。也就是说,在没有通信约束的情况下,在没有通信约束的情况下设计具有特定稳定性的观察者,我们通过网络实现它,我们在后者提供足够的条件以保护观察者的稳定性。特别是,我们提供了最大允许传输间隔(MATI)的绑定,可确保相应估计误差系统的输入到状态稳定性(ISS)属性。稳定性分析是基于轨迹的,利用小增益参数,并利用调度协议的持久令人兴奋的属性。此属性是我们分析中的关键,并允许我们与文献中发现的那些相比,我们获得明显更大的Mati界限。我们的成绩持有一般的NCSS;但是,我们表明这些结果也适用于在名为WirelessHart(WH)的特定物理网络上实现的NCS。后者主要是其多跳结构,开槽通信周期,以及同时传输在不同频率上的可能性。我们表明我们的结果可以通过考虑WH-NCS模型的内在结构来进一步提高。也就是说,我们明确地利用模型结构在我们的分析中获取偶数更严格的Mati,可确保估计错误系统的ISS属性。最后,为了说明我们的结果,我们为一类Lipschitz非线性系统和高增益观察者提供了分析和数值模拟。

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