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Automated Power Assessment for Helicopter Turboshaft Engines

机译:直升机涡轮轴发动机的自动功率评估

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An accurate indication of available power is required for helicopter mission planning purposes. Available power is currently estimated on U.S. Army Blackhawk helicopters by performing a Maximum Power Check (MPC), a manual procedure performed by maintenance pilots on a periodic basis. The MPC establishes Engine Torque Factor (ETF), an indication of available power. It is desirable to replace the current manual MPC procedure with an automated approach that will enable continuous real-time assessment of available power utilizing normal mission data. This report presents an automated power assessment approach which processes data currently collected within helicopter Health and Usage Monitoring System (HUMS) units. The overall approach consists of: 1) a steady-state data filter which identifies and extracts steady-state operating points within HUMS data sets; 2) engine performance curve trend monitoring and updating; and 3) automated ETF calculation. The algorithm is coded in Matlab~® and currently runs on a PC. Results from the application of this technique to HUMS mission data collected from UH-60L aircraft equipped with T700-GE-701C engines are presented and compared to manually calculated ETF values. Potential future enhancements are discussed.
机译:直升机任务计划需要准确指示可用功率。当前,通过执行最大功率检查(MPC)来估计美国陆军Blackhawk直升机上的可用功率,该检查是由维护飞行员定期执行的手动程序。 MPC建立发动机扭矩因数(ETF),指示可用功率。期望用自动方法代替当前的手动MPC程序,该方法将能够利用正常任务数据连续实时地评估可用功率。本报告提供了一种自动功率评估方法,该方法可处理直升机健康和使用情况监视系统(HUMS)单元中当前收集的数据。总体方法包括:1)稳态数据过滤器,用于识别和提取HUMS数据集中的稳态工作点; 2)发动机性能曲线趋势监测与更新;和3)ETF自动计算。该算法在Matlab®中进行了编码,目前可在PC上运行。将该技术应用于从配备T700-GE-701C发动机的UH-60L飞机收集的HUMS任务数据中得出的结果进行了比较,并与手动计算的ETF值进行了比较。讨论了未来可能的增强功能。

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