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A set-membership approach to integrated trade-off design of robust fault detection system

机译:鲁棒故障检测系统综合权衡设计的集合成员法

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In order to improve fault detection (FD) performance, integrated design of residual generation and evaluation is investigated in this paper for trade-offs between fault detection rate and false alarm rate (FAR). A set-membership approach is proposed in residual evaluation by adopting a threshold ellipsoid, which enables more design freedom than a conventional threshold value. With the set-based definitions of fault detection rate and FAR, the integrated design problem is formulated by maximizing the FD performance under a predefined FAR. The joint optimal selection of a residual generator and a threshold ellipsoid is equivalently transformed into a simplified optimization problem of determining an optimal threshold ellipsoid for any given residual generator. A suboptimal solution for the set-membership-based integrated FD system design is obtained based on approximated computation of the FD performance. Monte Carlo simulations show the performance improvement of the proposed method compared with an existing integrated design method. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:为了提高故障检测(FD)的性能,本文研究了残差生成和评估的集成设计,以权衡故障检测率和误报率(FAR)。在残差评估中,通过采用阈值椭圆体提出了一种集合成员方法,该方法比常规阈值具有更大的设计自由度。利用基于集合的故障检测率和FAR的定义,通过在预定FAR下最大化FD性能来制定集成设计问题。将残差生成器和阈值椭球的联合最优选择等效地转换为确定任何给定残差生成器的最优阈值椭球的简化优化问题。基于FD性能的近似计算,获得了基于集合成员的集成FD系统设计的次优解决方案。蒙特卡洛仿真显示,与现有的集成设计方法相比,该方法的性能有所提高。版权所有(c)2016 John Wiley&Sons,Ltd.

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