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基于虚拟现实技术的航空涡扇发动机仿真系统 被引量:8

A Simulation System of Turbofan Engine Based on Virtual Reality
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摘要 利用虚拟现实技术的优势和特点,研制成功一大型航空燃气涡轮风扇发动机仿真系统。系统采用了多种虚拟现实的关键技术,创造了一个具有强烈沉浸感和真实感的虚拟实验环境,并利用此环境结合航空发动机的专业知识开发成功了三大功能模块,直观生动地揭示了发动机原理,发动机构造,发动机试车等航空燃气涡轮风扇发动机的主要部分专业理论知识,为航空发动机领域相关从业人员带来了一种全新的学习研究工具。 Using the vantage and features of virtual reality, a large simulation system of turbofan engine has been developed. This simulation system is based on many kinds of key virtual reality technologies, has created a virtual experiment environment with strong immersion and reality. Combined with professional knowledge of turbofan engine, three functional modules of the system has been developed in the virtual environment. The simulation system exhibits the main professional theoretics of turbofan engine, and brings a new study tool for the aero engine professional.
出处 《计算机仿真》 CSCD 北大核心 2009年第12期57-61,共5页 Computer Simulation
关键词 虚拟现实 航空燃气涡轮风扇发动机 仿真系统 Virtual reality Turbofan engine Simulation system
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  • 1Bergamasco M. Grasping and moving objects in virtual environments: a preliminary approach towards a realistic behaviour[C].In: Toshio Fukuda ed. RO-MAN' 94, Proc 3rd IEEE Int Workshop on Robot and Human Communication, Nagoya, 1994, 44-49.
  • 2Kunii Y, Hashimoto H. Object grasping in virtual environment using dynamic force simulator [C]. In: Toshio Fukuda ed. ROMAN' 94, Proc 3rd IEEE Int Workshop on Robot and Human Communicationrn, Nagova, 1994, 261-264.
  • 3Iwata H. Artificial reality with force-feedback: Development of desktop virtual space with compact master manipulator[J]. Computer Graohics, 1990, 24:165-170.
  • 4Zeng Fen--fang, Liang Bai-lin. An interactive environment design based on digital glove[J]. 2000, 5(A2) : 153--157.
  • 5Iberall T. Human prehension and dexterous robot hands[J]. The International Journal of Robotics Research, 1997, 16 (3) : 285-299.
  • 6Iberall T. The nature of human prehension:three dexterous hands in one [J]. IEEE International Conference Robotics and Automation, 1987,396-401.
  • 7Cutkosky M R. On grasp choice, grasp models, and the design of hands for manufacturing tasks [J]. IEEE Transactions on Robotics and Automation, 1989,5 (3) : 269- 279.
  • 8Rijpkema H, Girard M. Computer animation of knowledge-based human grasping [J]. Computer Graphics, 1991,25 (4): 339-347.
  • 9曾芬芳,王建华,别小川,袁野.基于神经网络的手势识别[J].机器人,1999,21(1):40-45. 被引量:11
  • 10曾芬芳,梁柏林,刘镇,王建华.基于数据手套的人机交互环境设计[J].中国图象图形学报(A辑),2000,5(2):153-157. 被引量:39

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