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Vista/F-16 Multi-Axis Thrust Vectoring (MATV) control law design and evaluation

机译:Vista / F-16多轴推力矢量(MATV)控制律设计和评估

摘要

For the Multi-Axis Thrust Vectoring (MATV) program, a new control law was developed using multi-axis thrust vectoring to augment the aircraft's aerodynamic control power to provide maneuverability above the normal F-16 angle of attack limit. The control law architecture was developed using Lockheed Fort Worth's offline and piloted simulation capabilities. The final flight control laws were used in flight test to demonstrate tactical benefits gained by using thrust vectoring in air-to-air combat. Differences between the simulator aerodynamics data base and the actual aircraft aerodynamics led to significantly different lateral-directional flying qualities during the flight test program than those identified during piloted simulation. A 'dial-a-gain' flight test control law update was performed in the middle of the flight test program. This approach allowed for inflight optimization of the aircraft's flying qualities. While this approach is not preferred over updating the simulator aerodynamic data base and then updating the control laws, the final selected gain set did provide adequate lateral-directional flying qualities over the MATV flight envelope. The resulting handling qualities and the departure resistance of the aircraft allowed the 422nd_squadron pilots to focus entirely on evaluating the aircraft's tactical utility.
机译:对于多轴推力矢量(MATV)程序,使用多轴推力矢量开发了新的控制规律,以增强飞机的空气动力控制能力,以提供高于正常F-16攻角极限的机动性。控制律架构是使用洛克希德·沃思堡的离线和先导仿真功能开发的。最终的飞行控制法则用于飞行测试,以证明在空空作战中使用推力矢量获得的战术优势。模拟器空气动力学数据库与实际飞机空气动力学之间的差异导致飞行测试程序期间的横向飞行质量与飞行员模拟过程中确定的横向飞行质量显着不同。在飞行测试程序的中间执行了“拨号获取”飞行测试控制法则的更新。这种方法可以在飞行中优化飞机的飞行质量。尽管与更新模拟器空气动力学数据库然后更新控制定律相比,这种方法不是首选,但最终选择的增益集确实在MATV飞行包线上提供了足够的横向飞行质量。由此产生的操纵质量和飞机的起飞阻力,使第422中队飞行员完全专注于评估飞机的战术效用。

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