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直升机目标跟踪任务中飞行员控制行为研究

Research on Pilot Control Behavior in Helicopter Target Tracking Tasks
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摘要 飞行员驾驶直升机完成目标跟踪任务时,可以通过视觉和运动等线索感知当前飞行状态从而产生相应的控制行为。为研究飞行员在不同运动反馈方式下的控制行为,在无运动反馈和有滚转角运动反馈两种情况下进行了飞行员人在回路仿真试验,并提出一种遗传算法和高斯-牛顿法的混合优化算法用于飞行员模型参数估计。通过方差分析的方法探讨了不同运动反馈方式对飞行员控制行为以及飞行员模型参数的影响。研究结果表明:利用混合优化算法得到的飞行员模型参数,能够有效表示真实的飞行员控制行为与动力学特性;在不同的运动反馈方式下,飞行员会调整其控制策略,从而提高在目标跟踪任务中的表现并调节控制活动。 During helicopter operations for target tracking tasks,pilots perceive the current flight state through visual and motion cues,thereby generating corresponding control behaviors.To study pilot control behavior under different motion feedback modes,this paper conducts pilot-in-the-loop simulation experiments under two conditions:Without motion feedback and with roll angle motion feedback.A hybrid optimization algorithm combining genetic algorithms and the Gauss-Newton method is proposed for pilot model parameter estimation.Furthermore,the effects of different motion feedback modes on pilot control behavior and pilot model parameters are explored using variance analysis.The research results indicate that the pilot model parameters obtained using the hybrid optimization algorithm can effectively represent the pilot’s actual control behavior and dynamic characteristics.Under different motion feedback modes,pilots adjust their control strategies to improve performance in target tracking tasks and regulate their control activities.
作者 贺智鑫 王洛烽 陈仁良 HE Zhixin;WANG Luofeng;CHEN Renliang(National Key Laboratory of Helicopter Aeromechanics/Helicopter Research Institute,Nanjing University of Aeronautics&Astronautics,Nanjing 210016,China)
出处 《南京航空航天大学学报(自然科学版)》 北大核心 2025年第4期760-768,共9页 Journal of Nanjing University of Aeronautics & Astronautics (Natural Science Edition)
基金 直升机动力学全国重点实验室基金(2023-HA-LB-067-01) 中国博士后基金第74批面上资助项目(2023M741678) 旋翼空气动力学重点实验室基金(RAL202302-4) 江苏省卓越博士后计划 江苏高校优势学科建设工程。
关键词 飞行员模型 飞行员人在回路仿真试验 混合优化算法 方差分析 直升机-飞行员耦合系统 参数辨识 pilot model pilot-in-the-loop simulation experiments hybrid optimization algorithm analysis of variance helicopter-pilot coupling system parameter identification
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  • 1屈香菊,方振平.驾驶员模型建模精度分析方法研究[J].飞行力学,1996,14(2):35-41. 被引量:3
  • 2Committee on the Effects of Aircraft-pilot Coupling on Flight Safety, Aeronautics & Space Engineering Board. Aviation safety and pilot control[S]. Washington D. C.: National Academy Press, 1997.
  • 3Hess R A. Handling qualities and flight safety implications of rudder control strategies and systems in transport aircraft[R]. Washington D. C.: Department of Transportation Federal Aviation Research, 2005.
  • 4Don H. A human-centred design agenda for the development of single crew operated commercial aircraft[J]. Aslib Proceedings: New Information Perspectives, 2007, 79(5): 518-526.
  • 5Efremov A V, Ogloblin A V. Progress in pilot-in the loop investigations for flying qualities prediction and evaluation[C]∥ICAS 2006, 25th International Congress of the Aeronautical Sciences. 2006.
  • 6Dolega B, Rogalski T. The training rate of aircraft handling quality evaluation scale[J]. Aircraft Engineering and Aerospace Technology: An International Journal, 2008, 80(3): 274-279.
  • 7Hess R A. Analytical assessment of performance, handling qualities, and added dynamics in rotorcraft flight control[J]. IEEE Transactions on Systems, Man and Cybernetics, Part A: Systems and Humans, 2009, 39: 262-271.
  • 8Innocenti M, Minciotti R L. Pilot modeling techniques for the analysis of aircraft linear dynamic behavior[J]. Aeronautical Journal, 1990, 94(935): 153-164.
  • 9Hess R A. Unified theory for aircraft handling qualities and adverse aircraft-pilot coupling[J]. Journal of Guidance, Control and Dynamics, 1997, 20(6): 1141-1148.
  • 10Efremov A V, Rodchenko V V,Boris S. Investigation of pilot-induced oscillation tendency and prediction criteria development[R]. WL-96-310999, USA: Wright Lab, 1996.

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