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Set-Based Detection and Isolation of Intersampled Delays and Pocket Dropouts in Networked Control

机译:网络控制中基于集的采样间延迟和口袋丢失的检测和隔离

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This paper focuses on the set-based method for detection and isolation of the network-induced time-delays and packet dropouts. We particularly pay attention to the systems described by a linear discrete-time equation affected by additive disturbances, controlled via redundant communication channels prone to intersampled time-delays and packet dropouts. Time-delays and packet dropouts are considered as faults from a classical control theory perspective. We will show that fault detection and isolation can be achieved indirectly through the separation of positively invariant sets that correspond to the closed-loop dynamics with healthy and faulty communication channels. For this purpose, in order to provide a reference signal that uniquely guarantees the fault detection and isolation in real time, we design a reference governor using receding horizon technique.
机译:本文重点介绍基于集合的方法来检测和隔离网络引起的时延和数据包丢失。我们特别注意由受附加干扰影响的线性离散时间方程所描述的系统,该系统由易于发生采样间时延和数据包丢失的冗余通信信道控制。从经典控制理论的角度来看,时间延迟和数据包丢失被视为故障。我们将说明,通过将与健康和错误的通信通道相对应的闭环动态相对应的正不变量集分离,可以间接实现故障检测和隔离。为此,为了提供一种独特的实时保证故障检测和隔离的参考信号,我们使用后退水平技术设计了一种参考调速器。

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