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Design and implementation of the V-22 tiltrotor aircuaft vibration monitoring and diagnostic system

机译:V-22倾转旋翼飞机振动监测与诊断系统的设计与实现

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This paper addresses the design architecture and current status of the development and integration of the drive train vibration monitoring system (VMS) for the Bell-Boeing V-22 tiltrotor aircraft, which in 1999 has begun initial production deliveries. The VMS monitors vibrations in the rotors, engines, interconnect shafting system (ISS), the pylon shafts, and the nacelle blowers. It also includes ISS hanger bearing temperature monitoring. The VMS is part of the V-22 health monitoring system called VSLED (Vibration, Structural Life, and Engine Diagnostics). The VMS architecture is based on the V-22 maintenance goals, which are the detection of existing and/or developing faults to support the on-condition monitoring of mechanical components and to enhance preventive maintenance. It also includes the distinct function of rotor track and balance. The paper describes the onboard VMS architecture. In addition, it presents an overview of the ground station diagnostic algorithm architecture that has been incorporated in the Aircraft Maintenance Event Ground Station (AMEGS). Demonstration of the diagnostic capabilities are presented by two examples of fault detection of degraded parts.
机译:本文介绍了贝尔波音V-22倾转旋翼飞机的传动系统振动监测系统(VMS)的开发和集成的设计架构和当前状况,该系统已于1999年开始批量生产。 VMS监视转子,发动机,互连轴系(ISS),塔轴和机舱鼓风机中的振动。它还包括ISS吊架轴承温度监控。 VMS是称为VSLED(振动,结构寿命和发动机诊断)的V-22健康监测系统的一部分。 VMS体系结构基于V-22维护目标,该目标是检测现有和/或正在发展的故障,以支持对机械组件进行实时监控并增强预防性维护。它还包括转子跟踪和平衡的独特功能。本文介绍了板载VMS体系结构。此外,它还概述了已纳入飞机维修事件地面站(AMEGS)的地面站诊断算法体系结构。通过对退化零件进行故障检测的两个示例来展示诊断能力。

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