Virtual Reality Simulation of High Firing Rate Weapon

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In order to analyze the typical target damage efficiency of high speed aerial gatling-gun in different tactical environments, an Efficiency Evaluation System of Gatling-Gun based on STAGE has been researched and developed. It can get the damage probability of the target by setting the combat environment, the technical parameters of the weapon system, the operating parameters of the typical target and other technical indexes, and reconstruct the attack process through three-dimensional simulation. The technical parameters of the weapon system can be modified so as to achieve ideal damage effect of the typical target.It can be a reference for the configuration of the weapon platforms as well as its next research and develop goals.The reliability of the simulation model has already been verified through simulation analysis of intercepting flying targets of 0-2 Mach taken in a variety of radio frequencies.

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608-612

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June 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Guo Kai, Xu Cheng. Small arms system based on shooting efficiency evaluation method of operational effectiveness of [J]. Acta, 2007,28 ( 2): 748-751.

Google Scholar

[2] Liang Yangang, Chen Lei, Tang Guojin. Based on stand-off missile weapon system effectiveness evaluation method [J]. Acta, 2008,29 ( 6): 621-623.

Google Scholar

[3] Ji BolinLin Yixin, Wang Xixing. Ground weapon combat effectiveness standardization method [J]. Acta, 2005,26 ( 1): 357-359.

Google Scholar

[4] Xu Kehu, Wang Rungang, Ma Junfeng, Zhao Yuzhu. Research on tank fire control system simulation [J]. fire control and command control, 2007,32 ( 3): 357-359.

Google Scholar

[5] Xu Jianzhi, Liu Dingchen. The anti-ship missiles application based on STAGE simulation [J]. Journal of system simulation, 2004,16 ( 5): 978-980.

Google Scholar

[6] Ke Jiashan, Chen Lang. STAGE software in tactics operational laboratory construction in the application of [J]. fire control and command control, 2002,27 ( 3): 63-67.

Google Scholar

[7] Zheng Peng, Ishi Akimatsu, Zhao Haitao. Based on the STAGE formation of ship-to-air missile cooperative air defense simulation system [J]. Command control system and simulation, 2010,32 ( 5): 76-79.

Google Scholar

[8] Zhao Xiaozhe, Wang Zaigang, SunYongkan. STAGE based distributed warship-submarine counterwork simulation system design [J]. Journal of system simulation, 2006,18 ( 4): 832-834.

Google Scholar