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Event-Triggered Fault Estimation for Stochastic Systems over Multi-Hop Relay Networks with Randomly Occurring Sensor Nonlinearities and Packet Dropouts

机译:随机发生的传感器非线性和丢包情况的多跳中继网络上随机系统的事件触发故障估计

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摘要

Wireless sensors have many new applications where remote estimation is essential. Considering that a remote estimator is located far away from the process and the wireless transmission distance of sensor nodes is limited, sensor nodes always forward data packets to the remote estimator through a series of relays over a multi-hop link. In this paper, we consider a network with sensor nodes and relay nodes where the relay nodes can forward the estimated values to the remote estimator. An event-triggered remote estimator of state and fault with the corresponding data-forwarding scheme is investigated for stochastic systems subject to both randomly occurring nonlinearity and randomly occurring packet dropouts governed by Bernoulli-distributed sequences to achieve a trade-off between estimation accuracy and energy consumption. Recursive Riccati-like matrix equations are established to calculate the estimator gain to minimize an upper bound of the estimator error covariance. Subsequently, a sufficient condition and data-forwarding scheme are presented under which the error covariance is mean-square bounded in the multi-hop links with random packet dropouts. Furthermore, implementation issues of the theoretical results are discussed where a new data-forwarding communication protocol is designed. Finally, the effectiveness of the proposed algorithms and communication protocol are extensively evaluated using an experimental platform that was established for performance evaluation with a sensor and two relay nodes.
机译:无线传感器具有许多需要远程估计的新应用。考虑到远程估计器的位置远离过程,并且传感器节点的无线传输距离受到限制,因此传感器节点始终通过多跳链路上的一系列中继将数据包转发到远程估计器。在本文中,我们考虑一个具有传感器节点和中继节点的网络,其中中继节点可以将估计值转发给远程估计器。针对随机系统中受随机发生的非线性和由伯努利分布序列控制的随机发生的丢包的随机系统,研究了事件触发的状态和故障的远程估计器以及相应的数据转发方案,以实现估计精度与能量之间的权衡消费。建立递归类似Riccati的矩阵方程,以计算估计器增益,以最小化估计器误差协方差的上限。随后,提出了一种充分的条件和数据转发方案,在该条件下,误差协方差在具有随机分组丢失的多跳链路中以均方有界。此外,讨论了理论结果的实现问题,其中设计了一种新的数据转发通信协议。最后,使用一个实验平台对提出的算法和通信协议的有效性进行了广泛评估,该实验平台是为使用传感器和两个中继节点进行性能评估而建立的。

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