Wang Meiqing, Tang Xiaoqing. Combined house of quality oriented product planning[J]. Journal of Beijing University of Aeronautics and Astronautics, 2004, 30(07): 652-656. (in Chinese)
Citation: YUAN Hao, YU Li-ming, WANG Zhan-linet al. Simulated Design of Multifunctional Cockpit Display with Preview and Predictor Function[J]. Journal of Beijing University of Aeronautics and Astronautics, 2002, 28(4): 420-423. (in Chinese)

Simulated Design of Multifunctional Cockpit Display with Preview and Predictor Function

  • Received Date: 09 Nov 2000
  • Publish Date: 30 Apr 2002
  • The preview and predictive information is introduced to cockpit display to make the future state of flight perceptible, so as to exert advanced control to vehicles. The multifunctional cockpit display with preview and predictor function is preliminarily designed by analyzing the landing process of an aircraft. An intelligent error signal display concept was proposed by applying optimal preview theory to flight height error display. The simulated design of 3D and 4D display were introduced. Finally, simulation experiments were given to compare the multifunctional display with the ordinary display.

     

  • [1] 于黎明,王占林,裘丽华辅助驾驶员操纵的综合预见显示预测控制[J]飞行力学, 1999,17(3):5~9. [2]Ochi T, Goto N. Trajectory control of aircraft using optimal preview control . In:Proceedings of the 33rd aircraft symposium . Tokyo:Japan Society for Aeronautical and Space Sciences, 1995. 115~118. [3]土谷武士,江上正.最新自动控制技术——数字预见控制[M].廖福成译.北京:北京科学技术出版社,1994. [4]于黎明.驾驶员预见预测辅助操纵与显示 .北京:北京航空航天大学自动化科学与电气工程学院,2000. [5]Wicken C D, Haskell I, Harte K. Ergonomic design for perspective flight-path displays[J]. IEEE Control Systems Magazine,1989,9(5):3~8. [6]Viebahn V, Harro. The 4D-Display . In:Proceedings of the 17th Digital Avionics Systems Conference . Bellevue:Piscataway, NJ, Institute of Electrical and Electronics Engineers Inc,1998. E54-1~E54-7.
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