首页> 外文会议>International Conference on Embedded Software and Systems(ICESS 2007); 20070514-16; Daegu(KR) >Smart Actuator-Based Fault-Tolerant Control for Networked Safety-Critical Embedded Systems
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Smart Actuator-Based Fault-Tolerant Control for Networked Safety-Critical Embedded Systems

机译:基于智能执行器的网络安全关键嵌入式系统的容错控制

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In this paper, a fault-tolerant control method is presented with an application to steer-by-wire (SBW) system. SBW is a network-based vehicle steering system in which the mechanical linkage and hydraulics are replaced by electrical motors and fieldbus networks. Since failure of a steering system may result in a catastrophic accident, SBW can be considered as a safety-critical embedded system for which very high level of dependability must be satisfied. This paper proposes an effective control strategy to tolerate faulty actuators. The proposed method has a simple structure to be implemented on low cost embedded processors. The reconfiguration strategy consists of two fold: ⅰ) a smart actuator of which embedded microprocessor provides the fast and accurate diagnostic information through a time-triggered fieldbus, and ⅱ) an IMC-PID controller which is capable of tolerating the effect of faults based on the diagnostic information being sent from the smart actuator. Simulation results with a SBW model show that the proposed method can enhance the system dependability in the presence of faults without using any redundant actuators.
机译:本文提出了一种容错控制方法,并将其应用于线控转向(SBW)系统。 SBW是基于网络的车辆转向系统,其中的机械连接和液压系统被电动机和现场总线网络代替。由于转向系统的故障可能会导致灾难性事故,因此SBW可以被视为对安全性至关重要的嵌入式系统,为此必须满足非常高的可靠性。本文提出了一种有效的控制策略来容忍有故障的执行器。所提出的方法具有要在低成本嵌入式处理器上实现的简单结构。重新配置策略包括两个方面:ⅰ)一个智能执行器,其嵌入式微处理器通过时间触发的现场总线提供快速而准确的诊断信息,以及ⅱ)一个IMC-PID控制器,该控制器能够基于以下情况容忍故障的影响:从智能执行器发送的诊断信息。 SBW模型的仿真结果表明,该方法可以在存在故障的情况下提高系统的可靠性,而无需使用任何冗余的执行器。

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