DocumentCode :
181112
Title :
The research on the task synthesis technology of the airplane
Author :
Wang Wen-hao ; Hu Sheng-hua ; Bao Yong
Author_Institution :
AVIC Aeronaut. Radio Electron. Res. Inst., Shanghai, China
fYear :
2014
fDate :
5-9 Oct. 2014
Abstract :
The future airplane will be faced with complex environment, complex mission and complex combat process. In order to elevate the capability of airplane mission and integrate task in application layer, we discussed the conception, running architecture and validation environment of task synthesis in this paper. The task synthesis technology contains situation awareness synthesis model, assessment and decision-making synthesis model and implementation and management synthesis model. In order to elevating the capability and the quality of the response, optimization and implement, the synthetic model of task system based on mission purpose and mission architecture is established to confirm the capacity, purpose and organization structure of mission system. The verification environment of task synthesis is used to realize development and demonstration. The whole process of the task is driven by the combat scenario and complied by mission synthesis and integrated simulation. Finally, airplane air-to-air intercept scenario is tested and verified. The simulations show that task synthesis technology not only helps to complete mission effectively, but also dispatches management function and physical resource rationally.
Keywords :
aerospace computing; aircraft; airplane air-to-air intercept scenario; airplane mission capability; airplane task synthesis technology; application layer; assessment synthesis model; combat scenario; complex combat process; complex environment; complex mission; decision-making synthesis model; implementation synthesis model; integrated simulation; management synthesis model; mission architecture; mission implementation; mission optimization; mission synthesis; mission system capacity; mission system organization structure; mission system purpose; rational management function dispatching; rational physical resource dispatching; response capability elevation; response quality elevation; situation awareness synthesis model; synthetic task system model; task integration; task synthesis verification environment; Airplanes; Atmospheric modeling; Computer architecture; Decision making; Monitoring; Optimization; Organizations;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Avionics Systems Conference (DASC), 2014 IEEE/AIAA 33rd
Conference_Location :
Colorado Springs, CO
Print_ISBN :
978-1-4799-5002-7
Type :
conf
DOI :
10.1109/DASC.2014.6979488
Filename :
6979488
Link To Document :
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