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Flight Test Results from the NF-15B Intelligent Flight Control System (IFCS) Project with Adaptation to a Simulated Stabilator Failure

机译:适应模拟稳定器故障的NF-15B智能飞行控制系统(IFCS)项目的飞行测试结果

摘要

Adaptive flight control systems have the potential to be more resilient to extreme changes in airplane behavior. Extreme changes could be a result of a system failure or of damage to the airplane. A direct adaptive neural-network-based flight control system was developed for the National Aeronautics and Space Administration NF-15B Intelligent Flight Control System airplane and subjected to an inflight simulation of a failed (frozen) (unmovable) stabilator. Formation flight handling qualities evaluations were performed with and without neural network adaptation. The results of these flight tests are presented. Comparison with simulation predictions and analysis of the performance of the adaptation system are discussed. The performance of the adaptation system is assessed in terms of its ability to decouple the roll and pitch response and reestablish good onboard model tracking. Flight evaluation with the simulated stabilator failure and adaptation engaged showed that there was generally improvement in the pitch response; however, a tendency for roll pilot-induced oscillation was experienced. A detailed discussion of the cause of the mixed results is presented.
机译:自适应飞行控制系统有可能对飞机行为的极端变化具有更大的弹性。极端变化可能是系统故障或飞机损坏的结果。为美国国家航空航天局NF-15B智能飞行控制系统飞机开发了一种基于直接自适应神经网络的飞行控制系统,并对其进行了失效(冻结)(不可移动)稳定器的飞行模拟。在有和没有神经网络自适应的情况下,进行编队飞行处理质量评估。列出了这些飞行测试的结果。讨论了与仿真预测的比较以及对自适应系统性能的分析。适应系统的性能根据其解耦侧倾和俯仰响应以及重新建立良好的机载模型跟踪能力来评估。通过模拟稳定器故障和适应性进行的飞行评估表明,俯仰响应总体上得到了改善。但是,出现了侧倾引燃引起的振荡的趋势。提出了混合结果的原因的详细讨论。

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