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Time-constrained failure diagnosis in distributed embedded systems: application to actuator diagnosis

机译:分布式嵌入式系统中时间受限的故障诊断:在执行器诊断中的应用

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摘要

Advanced automotive control applications such as steer-by-wire are typically implemented as distributed systems comprising many embedded processors, sensors, and actuators interacting via a communication bus. They have severe cost constraints, but demand a high level of safety and performance. Motivated by the need for timely diagnosis of faulty actuators in such systems, we present a method to achieve distributed failure diagnosis under deadline and resource constraints. Actuators are diagnosed in distributed fashion by processors to provide a global view of their fault status. The integration of software-based tests for actuator diagnosis within the overall control application is studied. These tests are implemented using analytical redundancy and execute concurrently with the control tasks. The test scheduling problem is then formulated and solved to guarantee actuator diagnosis within designer-specified deadlines while meeting control performance goals. As a secondary objective, the scheduling algorithm also reduces the number of processors required for diagnosis. We demonstrate the practicality of the proposed diagnosis approach by applying it to a steer-by-wire example to identify failed actuators in timely fashion.
机译:先进的汽车控制应用(如线控转向)通常实现为分布式系统,包括许多通过通信总线进行交互的嵌入式处理器,传感器和执行器。它们具有严格的成本约束,但是要求高水平的安全性和性能。出于对此类系统中的故障执行器进行及时诊断的需要,我们提出了一种在期限和资源约束下实现分布式故障诊断的方法。处理器以分布式方式诊断执行器,以提供其故障状态的全局视图。研究了在整个控制应用程序中用于执行器诊断的基于软件的测试的集成。这些测试使用分析冗余来实现,并且与控制任务同时执行。然后制定并解决测试计划问题,以确保在设计人员指定的期限内进行执行器诊断,同时满足控制性能目标。作为次要目标,调度算法还减少了诊断所需的处理器数量。通过将其应用到线控转向示例中,以及时识别出故障的执行器,我们证明了所提出的诊断方法的实用性。

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