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Performance improvements of an F-15 airplane with an integrated engine-flight control system

机译:带有集成发动机-飞行控制系统的F-15飞机的性能改进

摘要

An integrated flight and propulsion control system has been developed and flight demonstrated on the NASA Ames-Dryden F-15 research aircraft. The highly integrated digital control (HIDEC) system provides additional engine thrust by increasing engine pressure ratio (EPR) at intermediate and afterburning power. The amount of EPR uptrim is modulated based on airplane maneuver requirements, flight conditions, and engine information. Engine thrust was increased as much as 10.5 percent at subsonic flight conditions by uptrimming EPR. The additional thrust significantly improved aircraft performance. Rate of climb was increased 14 percent at 40,000 ft and the time to climb from 10,000 to 40,000 ft was reduced 13 percent. A 14 and 24 percent increase in acceleration was obtained at intermediate and maximum power, respectively. The HIDEC logic performed fault free. No engine anomalies were encountered for EPR increases up to 12 percent and for angles of attack and sideslip of 32 and 11 degrees, respectively.
机译:已经开发了集成的飞行和推进控制系统,并在NASA Ames-Dryden F-15研究飞机上进行了飞行演示。高度集成的数字控制(HIDEC)系统通过在中间和后燃功率下增加发动机压力比(EPR)来提供额外的发动机推力。根据飞机的操纵要求,飞行条件和发动机信息来调整EPR上调量。通过增加EPR,在亚音速飞行条件下,发动机推力增加了10.5%。额外的推力大大改善了飞机性能。在40,000英尺处,爬升率提高了14%,从10,000英尺到40,000英尺的爬升时间减少了13%。在中等功率和最大功率下,加速度分别提高了14%和24%。 HIDEC逻辑执行无故障。对于EPR增加到12%以及迎角和侧滑分别为32和11度的情况,都没有遇到引擎异常。

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