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Online Prognostics for Fuel Thermal Management System

机译:燃油热管理系统的在线预测

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Modern tactical aircraft subsystems face challenging weight and volume limitations. In addition, power and thermal subsystems have grown increasingly flight critical with each successive generation. Consequently, next generation power and thermal systems must reliably operate under narrower margins to enable electrically and thermally demanding capabilities, such as directed energy weapons. The ability to narrow these margins is ultimately limited by the ability to guarantee mission objectives despite variations and uncertainty in power and thermal system performance. This paper demonstrates online prognostic methods applied to a fuel thermal management system. Furthermore, this paper highlights the need for future research to quantify the effects on mission objectives caused by discrepancies between nominal and actual conditions for aircraft designs based on models of highly integrated systems.
机译:现代战术飞机子系统面临着重量和体积方面的挑战。此外,功率和热子系统在每一代产品中对飞行的要求都越来越高。因此,下一代电力和热力系统必须在较窄的裕度下可靠地运行,以实现对电和热的苛刻要求,例如定向能武器。尽管电力和热力系统性能存在变化和不确定性,但保证任务目标的能力最终限制了缩小这些余量的能力。本文演示了应用于燃料热管理系统的在线预测方法。此外,本文强调了未来的研究需要量化基于高度集成系统模型的飞机设计的标称条件与实际条件之间的差异对任务目标的影响。

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