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Preliminary analysis on an IVHM approach for prognosis of high-pressure filters for hydraulic Power Control Modules of helicopters

机译:直升机液压动力控制模块高压过滤器的IVHM方法预后分析

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The process of filtration is critical to ensure long operative life to on-board hydraulic equipment, especially in rotating-wing application where the severe vibratory environment lead to accelerated wear of the mechanical components and hence an increased production of debris. Filtration is obtained by mechanically separating the physical contaminants from the hydraulic fluid by means of filters, which hence tend to clog under prolonged usage. Filter replacement has been so far pursued through scheduled maintenance strategy, which however have proven to be rather cost-ineffective. To transition to a Condition-Based Maintenance, new Prognostics and Health Monitoring frameworks need to be developed. The paper deals with the feasibility analysis of such a system based on a high-fidelity simulation environment, rigorous description of the operating conditions and state-of-the-art algorithms.
机译:过滤过程对于确保机载液压设备的较长使用寿命至关重要,尤其是在旋转翼应用中,在这种情况下,剧烈的振动环境会导致机械部件的加速磨损,从而增加碎屑的产生。过滤是通过过滤器将物理污染物从液压流体中机械分离出来而实现的,因此在长时间使用时容易堵塞。到目前为止,已经通过计划的维护策略来进行过滤器的更换,但是事实证明,这种策略的成本效率很低。要过渡到基于状态的维护,需要开发新的预测和健康监控框架。本文针对基于高保真仿真环境的这种系统的可行性分析,对运行条件的严格描述以及最新算法。

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