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首页> 外文期刊>International Journal of Control >Positive invariant sets for fault tolerant multisensor control schemes
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Positive invariant sets for fault tolerant multisensor control schemes

机译:容错多传感器控制方案的正不变集

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This article deals with fault tolerant multisensor control schemes for systems with linear dynamics. Positive invariance is a common analysis and control design tool for systems affected by bounded constraints and disturbances. This article revisits the construction of ε-approximations of minimal robust positive invariant sets for linear systems upon contractive set-iterations. The cases of switching between different sets of disturbances and the inclusion of a predefined region of the state space are treated in detail. All these results are used in multisensor control schemes which have to deal with specific problems originated by the switching between different estimators and by the presence of faults in some of the sensors. The construction of positive invariant sets for different operating regimes provides, in this context, effective fault detection information. Within the same framework, global stability of the switching strategies can be assured if the invariant sets topology allows the exclusive selection of estimates obtained from healthy sensors.
机译:本文讨论了线性动态系统的容错多传感器控制方案。正不变性是受有限约束和干扰影响的系统的常用分析和控制设计工具。本文回顾了收缩集迭代时线性系统的最小鲁棒正不变集的ε逼近的构造。详细讨论了在不同的干扰集之间切换以及包含状态空间的预定义区域的情况。所有这些结果都用于多传感器控制方案中,该方案必须处理由不同估算器之间的切换以及某些传感器中存在的故障引起的特定问题。在这种情况下,为不同的运行方式构造正不变集可提供有效的故障检测信息。在相同的框架内,如果不变集拓扑允许从健康传感器获得的估计值进行唯一选择,则可以确保切换策略的全局稳定性。

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