首页> 外文期刊>International journal of applied mathematics and computer science >Robust Mpc for Actuator–Fault Tolerance Using Set–Based Passive Fault Detection and Active Fault Isolation
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Robust Mpc for Actuator–Fault Tolerance Using Set–Based Passive Fault Detection and Active Fault Isolation

机译:采用基于集合的被动故障检测和主动故障隔离功能的执行器容错功能强大的Mpc

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In this paper, a fault-tolerant control (FTC) scheme is proposed for actuator faults, which is built upon tube-based model predictive control (MPC) as well as set-based fault detection and isolation (FDI). In the class of MPC techniques, tubebased MPC can effectively deal with system constraints and uncertainties with relatively low computational complexity compared with other robust MPC techniques such as min-max MPC. Set-based FDI, generally considering the worst case of uncertainties, can robustly detect and isolate actuator faults. In the proposed FTC scheme, fault detection (FD) is passive by using invariant sets, while fault isolation (FI) is active by means of MPC and tubes. The active FI method proposed in this paper is implemented by making use of the constraint-handling ability of MPC to manipulate the bounds of inputs.After the system has been detected to become faulty, the input-constraint set of the MPC controller is adjusted to actively excite the system for achieving FI guarantees on-line, where an active FI-oriented input set is designed off-line. In this way, the system can be excited in order to obtain more extra system-operating information for FI than passive FI approaches.Overall, the objective of this paper is to propose an actuator MPC scheme with as little as possible of FI conservatism and computational complexity by combining tube-based MPC and set theory within the framework of MPC, respectively.Finally, a case study is used to show the effectiveness of the proposed FTC scheme.
机译:本文提出了一种基于执行器故障的容错控制(FTC)方案,该方案基于基于管的模型预测控制(MPC)和基于集的故障检测与隔离(FDI)。在MPC技术类别中,与其他鲁棒MPC技术(例如最小-最大MPC)相比,基于管的MPC可以以相对较低的计算复杂性有效地处理系统约束和不确定性。基于集合的FDI通常会考虑最坏的不确定性情况,因此可以可靠地检测和隔离执行器故障。在提出的FTC方案中,故障检测(FD)通过使用不变集是被动的,而故障隔离(FI)通过MPC和管道是主动的。本文提出的主动FI方法是利用MPC的约束处理能力来操纵输入的边界来实现的。在检测到系统出现故障后,将MPC控制器的输入约束集调整为积极地激发在线实现FI保证的系统,其中主动设计面向FI的输入集是离线设计的。这样,与被动式FI方法相比,可以激励系统以获得更多的FI系统操作信息。总体而言,本文的目的是提出一种执行器MPC方案,该方案应尽量减少FI的保守性和计算量。最后,通过案例研究证明了提出的FTC方案的有效性。

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