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Software fault detection and recovery in critical real-time systems: An approach based on loose coupling

机译:关键实时系统中的软件故障检测和恢复:基于松耦合的方法

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摘要

Remote handling (RH) systems are used to inspect, make changes to, and maintain components in the HER machine and as such are an example of mission-critical system. Failure in a critical system may cause damage, significant financial losses and loss of experiment runtime, making dependability one of their most important properties. However, even if the software for RH control systems has been developed using best practices, the system might still fail due to undetected faults (bugs), hardware failures, etc. Critical systems therefore need capability to tolerate faults and resume operation after their occurrence. However, design of effective fault detection and recovery mechanisms poses a challenge due to timeliness requirements, growth in scale, and complex interactions. In this paper we evaluate effectiveness of service-oriented architectural approach to fault tolerance in mission-critical real-time systems. We use a prototype implementation for service management with an experimental RH control system and industrial manipulator. The fault tolerance is based on using the high level of decoupling between services to recover from transient faults by service restarts. In case the recovery process is not successful, the system can still be used if the fault was not in a critical software module.
机译:远程处理(RH)系统用于检查,更改和维护HER机器中的组件,因此是任务关键型系统的一个示例。关键系统中的故障可能导致损坏,重大的财务损失和实验运行时间的损失,从而使可靠性成为其最重要的属性之一。但是,即使已使用最佳实践开发了用于RH控制系统的软件,由于未检测到的故障(错误),硬件故障等,系统仍可能会发生故障。因此,关键系统需要能够容忍故障并在故障发生后恢复运行的能力。然而,由于及时性要求,规模的增长以及复杂的交互作用,有效的故障检测和恢复机制的设计提出了挑战。在本文中,我们评估了关键任务实时系统中面向服务的体系结构方法对容错的有效性。我们使用带有实验性RH控制系统和工业机械手的服务管理原型实现。容错基于使用服务之间的高级解耦,以通过服务重启从瞬时故障中恢复。如果恢复过程失败,并且故障不在关键软件模块中,则仍然可以使用该系统。

著录项

  • 来源
    《Fusion Engineering and Design》 |2014年第10期|2272-2277|共6页
  • 作者

    Pekka Alho; Jouni Mattila;

  • 作者单位

    Department of Intelligent Hydraulics and Automation, Tampere University of Technology, Finland;

    Department of Intelligent Hydraulics and Automation, Tampere University of Technology, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ITER; Remote handling; Software; Fault tolerance; Dependability; Real-time;

    机译:ITER;远程处理;软件;容错能力可靠性;即时的;

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