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Preliminary supersonic flight test evaluation of performance seeking control

机译:寻求性能的超音速飞行试验的初步评估

摘要

Digital flight and engine control, powerful onboard computers, and sophisticated controls techniques may improve aircraft performance by maximizing fuel efficiency, maximizing thrust, and extending engine life. An adaptive performance seeking control system for optimizing the quasi-steady state performance of an F-15 aircraft was developed and flight tested. This system has three optimization modes: minimum fuel, maximum thrust, and minimum fan turbine inlet temperature. Tests of the minimum fuel and fan turbine inlet temperature modes were performed at a constant thrust. Supersonic single-engine flight tests of the three modes were conducted using varied after burning power settings. At supersonic conditions, the performance seeking control law optimizes the integrated airframe, inlet, and engine. At subsonic conditions, only the engine is optimized. Supersonic flight tests showed improvements in thrust of 9 percent, increases in fuel savings of 8 percent, and reductions of up to 85 deg R in turbine temperatures for all three modes. The supersonic performance seeking control structure is described and preliminary results of supersonic performance seeking control tests are given. These findings have implications for improving performance of civilian and military aircraft.
机译:数字飞行和发动机控制,功能强大的机载计算机以及先进的控制技术可以通过最大限度地提高燃油效率,最大化推力并延长发动机寿命来改善飞机性能。开发并优化了F-15飞机的准稳态性能的自适应性能搜索控制系统,并进行了飞行测试。该系统具有三种优化模式:最小燃料,最大推力和最小风机入口温度。在恒定推力下进行了最低燃油和风机入口温度模式的测试。三种模式的超音速单引擎飞行测试是在燃烧功率设置后进行变化的。在超音速条件下,性能寻求控制定律可以优化机身,进气道和发动机的集成度。在亚音速条件下,仅优化发动机。超音速飞行测试表明,所有三种模式的推力提高了9%,节油率提高了8%,涡轮温度降低了85摄氏度。描述了超声速性能搜索控制结构,并给出了超声速性能搜索控制测试的初步结果。这些发现对改善民用和军用飞机的性能具有影响。

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