On the use of disaster prediction for failure-tolerance in feedback control systems

J. Cunha, M. Z. Rela
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引用次数: 12

Abstract

Feedback control algorithms are inherently designed to compensate for external disturbances that the controlled system may suffer. This resilience is also extensible to late or wrong control actions produced by a failed controller computer, providing a degree of fault tolerance without the use of any particular mechanism. However, some controller failures, due to their duration or value, may indeed collapse the system, and thus other recovery measures must be taken. This paper proposes the inclusion of an Oracle that calculates, in a timely manner, the controlled system behavior under a failed controller, and triggers recovery when the control algorithm is predictably no more able to compensate for a particular controller failure. The systems so built follow the Fail-Bounded model. The main contribution of this paper is to show how this model can be implemented in a practical way for the very important class of applications based on feedback control, thus turning that model into a technique that can be used effectively to build production systems. The method was validated experimentally through fault injection on the controller computer of an inverted pendulum, one of the most time-demanding control system benchmarks.
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灾害预测在反馈控制系统容错中的应用
反馈控制算法天生就是为了补偿被控系统可能遭受的外部干扰而设计的。这种弹性还可扩展到由故障控制器计算机产生的延迟或错误的控制动作,在不使用任何特定机制的情况下提供一定程度的容错。但是,某些控制器故障,由于其持续时间或值,确实可能导致系统崩溃,因此必须采取其他恢复措施。本文建议包含一个Oracle,它可以及时计算控制器失效时被控系统的行为,并在控制算法无法预测到补偿特定控制器故障时触发恢复。这样构建的系统遵循故障边界模型。本文的主要贡献是展示了如何以一种实用的方式为基于反馈控制的非常重要的应用程序类实现该模型,从而将该模型转化为一种可以有效地用于构建生产系统的技术。通过在倒立摆控制器计算机上的故障注入实验验证了该方法的有效性。倒立摆是对时间要求最高的控制系统基准之一。
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