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Integral-Based Event-Triggered Fault Detection Filter Design for Unmanned Surface Vehicles

机译:基于积分的无人地面车辆事件触发故障检测滤波器设计

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摘要

This paper is concerned with the event-triggered fault detection filter (FDF) design for an unmanned surface vehicle (USV) under the network environment. A framework of fault detection is established for a USV subject to wave-induced disturbance and actuator failures, in which an FDF is utilized to construct a residual model and an integral-based event generator is introduced to save communication resources. Compared with the traditional instantaneous value based event-triggering scheme and periodic sampling, the proposed event-triggering mechanism can not only reduce bandwidth utilization of the network more significantly, but also get rid of the Zeno phenomenon fundamentally. The event-triggering scheme and the FDF are co-designed. Finally, the efficient performance of the proposed fault detection method based on integral-based event-triggering scheme is illustrated by simulation.
机译:本文涉及网络环境下无人水面车辆(USV)的事件触发故障检测滤波器(FDF)设计。建立了受波浪引起的扰动和执行器故障的USV故障检测框架,该框架利用FDF构造残差模型,引入基于积分的事件发生器以节省通信资源。与传统的基于瞬时值的事件触发方案和周期性采样相比,该事件触发机制不仅可以显着降低网络带宽利用率,而且可以从根本上消除Zeno现象。事件触发方案和FDF是共同设计的。最后,通过仿真说明了基于积分事件触发方案的故障检测方法的有效性能。

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