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Multiple model-based fault detection and diagnosis for helicopter with actuator faults via quantum information technique

机译:基于量子信息技术的多模式直升机执行器故障检测与诊断

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摘要

A multiple model-based fault detection and diagnosis approach for a helicopter with actuator faults and disturbances is developed in this article. Particularly, the actuator is locked in-place and does not respond to subsequent commands. A multiple model scheme is proposed to detect and isolate the faults. In the multiple model scheme, a series of parallel observers are constructed, each of which is based on a model that describes the system in the presence of a particular actuator fault. In addition, quantum information technique is used to choose which model matches the current system. Furthermore, to estimate the locked position, a robust fast adaptive fault estimation algorithm based on linear matrix inequality technique is proposed by considering the disturbances. Finally, the simulation results show the efficiency of this scheme.
机译:本文针对具有执行器故障和干扰的直升机,提出了一种基于多模型的故障检测和诊断方法。特别地,致动器被锁定就位并且不响应随后的命令。提出了一种多模型方案来检测和隔离故障。在多模型方案中,构造了一系列并行的观察者,每个观察者都基于描述特定执行器故障时系统的模型。另外,量子信息技术用于选择与当前系统匹配的模型。此外,为了估计锁定位置,提出了一种基于线性矩阵不等式技术的鲁棒快速自适应故障估计算法。最后,仿真结果表明了该方案的有效性。

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