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Flight Control Design for Alleviation of Pilot Workload during Helicopter Shipboard Operations

机译:直升机船上操作期间防止飞行员工作量的飞行控制设计

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A flight control design methodology for alleviating pilot workload during helicopter shipboard operations was developed and tested in simulation. The methodology uses modern MIMO control theory to improve gust rejection properties when operating in a turbulent ship airwake. The spectral properties of the airwake are identified using simulations and incorporated into the control synthesis process. The controller design is constrained to represent a limited authority SAS. Model order reduction methods are used to simply the control laws for practical implementation. The methodology was applied to design a modified SAS for the UH-60A operating over an LHA ship. The system was implemented in a high-fidelity simulation model and its performance was compared to that of the baseline SAS. Simulations were performed of the helicopter hovering in the turbulent airwake using a pilot model for two different wind-over-deck conditions. Results indicate that the modified SAS resulted in significantly lower control activity and angular motion of the aircraft.
机译:在模拟中开发并测试了用于缓解直升机船上操作期间的飞行控制设计方法。该方法采用现代MIMO控制理论在湍流船舶飞行器操作时改善燃气抑制性能。使用模拟识别出飞放的光谱特性,并掺入控制合成过程中。控制器设计被约束以表示有限的权威SAS。模型订单减少方法用于简单的实际实施控制法。该方法应用于设计用于在LHA船上运行的UH-60A的修改后的SA。该系统在高保真仿真模型中实现,其性能与基线SA的性能进行了比较。使用试验模型进行两种不同的卷绕式条件,对湍流飞行员的直升机悬停的直升机进行模拟。结果表明,修改的SAS导致飞机的控制活动显着降低。

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