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An L_1 Adaptive Stability Augmentation System Designed for MIL-HDBK-1797 Level 1 Flying Qualities

机译:专为MIL-HDBK-1797 1级飞行质量而设计的L_1自适应稳定性增强系统

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This paper describes the design of an L_1 adaptive Stability Augmentation System (SAS) for level 1 flying qualities, as defined in the Department of Defense Handbook for Flying Qualities of Piloted Aircraft, MIL-HDBK-1797. The SAS was developed for a Learjet 25 aircraft owned by Calspan Corporation for cruise and powered approach configurations. The structure of the flight control system consists of a baseline feedback controller, augmented with an L_1 adaptive loop. This architecture supports two control objectives: i) the attainment, under nominal conditions, of the desired flying qualities with a simple control structure and a clear path for certification according to current regulations, and ii) the need for robust performance guarantees in the presence of severe off-nominal dynamics such as an engine failure, a shift in the center of mass, or reduced control effectiveness due to surface or hydraulic damage, to name a few examples. The baseline and adaptive portion of the flight control system were designed to be engaged and disengaged in flight independently, to evaluate the performance and robustness of each component separately. A preliminary evaluation of the flight control system is provided through simulation to conclude that: i) the baseline satisfies desired flying quality and robustness guidelines, but exhibits undesired behavior in the presence of severe off-nominal dynamics, and ii) the L_1 adaptive augmentation does no harm in nominal conditions, provides robust performance in the presence of off-nominal dynamics, and a graceful degradation in the aircraft behavior as the severity of the off-nominal dynamics increases. A post-flight assessment of the flying and handling qualities of this flight control system can be found in the companion paper "Recovery of Desired Flying Characteristics with an L_1 Adaptive Control Law: Flight Test Results on Calspan's VSS Learjet".
机译:本文描述了针对国防部1级飞行质量的L_1自适应稳定性增强系统(SAS)的设计,这在《美国国防部关于飞行员飞机飞行质量的手册》(MIL-HDBK-1797)中进行了定义。 SAS是为Calspan Corporation拥有的Learjet 25飞机开发的,用于巡航和动力进近配置。飞行控制系统的结构由基线反馈控制器组成,并增加了L_1自适应回路。该架构支持两个控制目标:i)在标称条件下,具有简单的控制结构和根据当前法规的清晰认证途径即可获得所需的飞行质量;以及ii)在存在以下情况时,需要有可靠的性能保证仅举几个例子,例如发动机故障,质心偏移或由于表面或液压损坏而导致的控制效果降低等严重的非标称动态变化。飞行控制系统的基线和自适应部分设计为在飞行中独立地接合和分离,以分别评估每个组件的性能和耐用性。通过模拟对飞行控制系统进行了初步评估,得出的结论是:i)基线满足所需的飞行质量和稳健性准则,但是在出现严重的非标称动力学的情况下表现出不希望的行为,并且ii)L_1自适应增强在标称条件下无害,在存在非标称动力学的情况下提供稳定的性能,并且随着非标称动力学的严重性增加,飞机行为会适度降低。可以在随附的论文“使用L_1自适应控制定律恢复所需的飞行特性:在Calspan的VSS Learjet上进行飞行测试结果”中找到对该飞行控制系统的飞行和操纵质量进行的飞行后评估。

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