线性系统的弹性可达性

Jean-Baptiste Bouvier, Melkior Ornik
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引用次数: 0

摘要

容错系统即使在某些组件出现故障时也能实现其目标。本文研究的是对一种特殊故障的容错能力:执行器控制权的丧失。也就是说,我们研究线性系统的理想目标集在任何不理想的输入情况下是否仍然可以达到。与鲁棒控制相反,我们假定可以实时观察到不良输入,并允许控制输入取决于这些不良输入。本文以之前关于非期望输入可达到性的研究为基础,提出了线性系统的可达到性条件,并通过计算凹凸目标函数的最小值,获得了描述无漂移线性系统目标集可达到性的公式。根据这一公式,我们建立了两个新的弹性可达性充分条件。
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Resilient Reachability for Linear Systems.

A fault-tolerant system is able to reach its goal even when some of its components are malfunctioning. This paper examines tolerance to a specific type of malfunction: the loss of control authority over actuators. Namely, we investigate whether the desired target set for a linear system remains reachable under any undesirable input. Contrary to robust control, we assume that the undesirable inputs can be observed in real time, and subsequently allow the control inputs to depend on these undesirable inputs. Building on previous work on reachability with undesirable inputs, this paper develops a reachability condition for linear systems, and obtains a formula that describes reachability of the goal set for driftless linear systems by computing the minimum of a concave-convex objective function. From this formulation we establish two novel sufficient conditions for resilient reachability.

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