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Prognostic and Health Management System for Fly-by-wire Electro-Hydraulic Servo Actuators for detection and tracking of actuator faults

机译:用于检测和跟踪执行器故障的循环电液伺服驱动器的预后和健康管理系统

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Maintenance of flight control actuation systems is currently performed on a scheduled basis, however air fleet operators and component manufacturers are willing to move from scheduled maintenance to Condition Based Maintenance (CBM) in order to reduce maintenance costs and improve aircraft dispatchability. Prognostics and Health Management (PHM) systems are a critical part of CBM and are perceived as a breakthrough technology to effectively respond to an urgent and critical need to improve the readiness, availability, reliability, safety and maintainability of aerospace vehicles. This paper presents the results of an ongoing research activity focused on the development of a PHM system for fly-by-wire Electro-Hydraulic Servo Actuators (EHSA) without adding new sensors. The PHM system is being developed with the objective of detecting the most common faults, according to a failure mode effects and criticality analysis (FMECA). The paper describes in particular the tools used for detection and tracking of internal leakage faults of the hydraulic actuator, which is one of the most common faults of hydraulic servo-actuators in service, and for predicting its remaining useful life (RUL). The research work has been supported by the development of a nonlinear model for a reference EHSA, that has been implemented using physical equations and system parameters, taking into account environmental condition and disturbances. The model was validated through tests runs on a flight control actuator of a civil aircraft. Simulations are performed in nominal conditions and with progressive injection of degradation to verify the PHM algorithm. The performances of the PHM algorithms are evaluated by means of proper metrics.
机译:飞行控制驱动系统的维护目前正在按计划进行,但空军运营商和部件制造商愿意从预定的维护转移到基于条件的维护(CBM),以降低维护成本并改善飞机调度性。预测和健康管理(PHM)系统是CBM的关键部分,被认为是有效应对迫切和批判性,以改善航空航天车辆的准备,可用性,可靠性,安全性和可维护性的突破性技术。本文介绍了持续的研究活动的结果,重点关注用于逐线电液伺服伺服执行器(EHSA)的PHM系统的开发,而无需添加新传感器。根据故障模式效应和临界分析(FMECA),正在开发PHM系统的目的是检测最常见的故障。本文特别描述了用于检测和跟踪液压执行器的内部泄漏故障的工具,该致动器是服务中液压伺服执行器的最常见故障之一,以及预测其剩余的使用寿命(RUL)。通过使用物理方程和系统参数实施的参考EHSA的非线性模型的开发支持研究工作,考虑到环境条件和干扰。通过试验在民用飞机的飞行控制执行器上运行验证该模型。仿真在标称条件下进行,逐步注入劣化以验证PHM算法。通过适当的指标评估PHM算法的性能。

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