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ADJUSTMENT AND VALIDATION OF MONITORING SYSTEM ALGORITHMS ON THE SIMULATED HISTORICAL DATA OF AN AIRCRAFT ENGINE FLEET

机译:在飞机发动机舰队模拟历史数据上的监测系统算法调整与验证

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In the field of gas turbine diagnostics, a significant gap is observed between the variety of proposed and investigated diagnostic solutions and a narrow group of algorithms employed in real monitoring systems. One of the explanations is that diagnostic algorithms of a monitoring system (system components) are usually developed and verified separately from each other. An additional explanation is related to simplified simulated data used to verify the algorithms. The present paper aims to adjust and validate the joint operation of the algorithms of a gas turbine monitoring system during the whole lifetime. The software tool called the Propulsion Diagnostic Method Evaluation Strategy (ProDiMES) provides the input data. This tool realistically simulates the steady-state parameters of an aircraft engine fleet. The simulation embraces a total engine life and includes different variations of deterioration and various engine, actuator, and sensor faults. Using ProDiMES, some diagnostic solutions have been verified so far. However, they do not include all necessary monitoring system components, use a short fixed-time interval of input data, and do not analyze long-term deterioration. In contrast, this paper presents an attempt to enhance a whole diagnostic process. It considers the operation of various data-driven algorithms of a monitoring system during engine life. The paper focuses on the tuning of the algorithms themselves and adjustment of their interactions.
机译:在燃气轮机诊断领域中,在各种所提出的和研究诊断溶液和实际监测系统中采用的窄组算法之间观察到显着差距。其中一个解释是监控系统(系统组件)的诊断算法通常彼此分开开发和验证。附加说明与用于验证算法的简化模拟数据有关。本文旨在在整个寿命期间调整和验证燃气轮机监测系统算法的联合操作。称为推进诊断方法评估策略(杂项)的软件工具提供了输入数据。该工具现实地模拟了飞机发动机舰队的稳态参数。仿真包括总发动机寿命,包括劣化和各种发动机,执行器和传感器故障的不同变化。迄今为止已经验证了一些诊断解决方案。但是,它们不包括所有必要的监控系统组件,使用输入数据的短固定时间间隔,并且不会分析长期恶化。相比之下,本文提出了增强整个诊断过程的尝试。它考虑了在发动机寿命期间监测系统的各种数据驱动算法的操作。本文侧重于调整算法本身并对他们的互动进行调整。

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