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The Design and Realization of Experiment Platform in
Airborne Equipments
Ying Gao, Tao Jiang, Lei Lei, and Shuxia Guo
School of Marine Technology, Northwestern Polytechnical University, 710072 Xi'an, China
jt5270@sina.com, gaoying@nwpu.edu.cn
Abstract. In view of the actual requirement of piloting aircraft of EW and the
use of virtual reality technology and visualization technology, we establish a
platform for virtual simulation system and analyze the main function of the
various modules in the system. And then make use of certain methods and steps
to implement the system, and introduce the methods that using the OpenGL
function to implement the description of electromagnetic signal. In the last, the
article implements the system function by using the computer program.
Keywords: Electronic Warfare, Virtual Scene System, Visualization, Vega,
OpenGL Function.
1 Foreword
Currently, virtual reality technology is widely used, the use of virtual reality and
simulation technology to develop virtual test simulation system of airborne equip-
ments, can improve the quality of testing, training and data analysis. Therefore, in the
process of developing and testing equipments carried by aircrafts, both domestic and
foreign attach great importance to the function of computer simulation technology in
development of models, from the beginning of the model design to the whole devel-
opment process in the factory, according to the requirements of different stages, com-
plete different experiments of the digital simulation[1].
"Simulation experiment platform of airborne fire control equipments" is a specific
application using the virtual reality technology and visualization technology in the
semi-physical missile test. A carrier plane is imitated as virtual equipments launch
platform which will carry out the entire fight flow path's simulation.
2 Overall System Design
"Simulation experiment platform of airborne fire control equipments" is developed to
simulate a carrier plane as the virtual equipments launch platform, carry on certain
control training, and it can be also used as a node in the closed-loop of the missile's
guidance and control system which go through the half-material distributed simula-
tion of the overall system. In the simulation process, the release of aircraft and air-
borne fire control equipments combat missions and the real-time dynamic display for
 
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