计算机科学 ›› 2013, Vol. 40 ›› Issue (11): 14-17.

• 综述 • 上一篇    下一篇

军事分析仿真评估系统WMD模型研究

杨山亮,赵鑫业,杨妹,付跃文,周云   

  1. 国防科学技术大学信息系统与管理学院 长沙410073;国防科学技术大学信息系统与管理学院 长沙410073;国防科学技术大学信息系统与管理学院 长沙410073;国防科学技术大学信息系统与管理学院 长沙410073;国防科学技术大学信息系统与管理学院 长沙410073
  • 出版日期:2018-11-16 发布日期:2018-11-16
  • 基金资助:
    本文受国家自然科学基金项目(61074108)资助

Research on WMD Model in Military Simulation and Analysis System

YANG Shan-liang,ZHAO Xin-ye,YANG Mei,FU Yue-wen and ZHOU Yun   

  • Online:2018-11-16 Published:2018-11-16

摘要: 大规模杀伤性武器(WMD)是军事分析仿真评估系统的重要研究内容,建立合适和准确的WMD模型能够有效模拟和预测WMD影响进程,为生化防护辅助决策提供重要的参考信息。首先介绍了WMD模型在军事分析仿真评估系统中的地位和作用,然后从HPAC模型引擎、数据驱动模式和数据采集接口3个方面详细分析了WMD模型的建模思想,最后在军事分析仿真评估原型系统的平台上,通过仿真实例验证了WMD模型的有效性和正确性。

关键词: 军事分析仿真评估系统,WMD,HPAC模型引擎,数据驱动模式,数据采集接口

Abstract: Weapons of mass destruction are of great significance as an important part of military simulation and analysis system.Establishing the proper and correct WMD model can simulate and predict WMD impact process effectively,which can provide significant reference information for biochemical-protection decision support operations.Firstly,the status and role of WMD in military simulation and analysis system were introduced in brief.Secondly,the modeling ideas of WMD model were described detailedly from the three aspects of HPAC model engine,data-driven mode and data acquisition interface.Finally,an illustrative example utilizing the prototype military simulation system was given to verify the correctness and validity of the WMD model.

Key words: Military simulation and analysis system,Weapons of mass destruction,HPAC model engine,Data-driven mode,Data acquisition interface

[1] 黄柯棣,邱晓刚,等.建模与仿真技术[M].长沙:国防科技大学出版社,2011
[2] 张欣景,赵志军,谢国新,等.海军诸兵种综合战术训练仿真系统构建研究[J].指挥控制与仿真,2010,2(5):71-75
[3] 李会杰,李雅峰,何循来.基于虚拟现实技术的某型导弹仿真训练系统研究[J].系统仿真学报,2008,0(9):2323-2325
[4] 李群,杨峰,孙伟,等.空军战役过程推演仿真系统研究[J].系统仿真学报,2003,15(4):502-504
[5] 黄柯棣,赵鑫业,杨山亮,等.军事分析仿真评估系统关键技术研究[J].系统仿真学报,2012,4(12):2439-2447
[6] 毕义明,刘良,刘伟,等.军事建模与仿真[M].北京:国防工业出版社,2009
[7] 黄健,郝建国,黄柯棣.基于HLA的分布仿真环境KD-HLA的研究与应用[J].系统仿真学报,2004,6(2):214-221
[8] 陈昊,慕晓冬,杨旭,等.Agent方法在基于HLA的作战仿真系统中的应用[J].西川兵工学报,2012,3(4):94-96
[9] 李瑛,毕义明.作战仿真中指挥Agent的实现[J].火力与指挥控制,2010,5(4):164-166
[10] Specialized Radiological Monitoring and Hazard Assessment Capabilities[EB/OL].http://www.acq.osd.mil/ncbdp/narp/Radiation_Data/Specialized_Radiological.htm,2005
[11] Chang J C,Hanna S R.Use of Salt Lake City URBAN 2000Field Data to Evaluate the Urban Hazard Prediction Assessment Capability(HPAC)Dispersion Model[J].American Meteorological Society,2005(44):485-500
[12] Chancellor R W.A Comparison of Hazard Prediction and Assessment Capability(HPAC)Software Dose-rate Contour plots to A Sample of Local Fallout Data from Test Detonations in the Continental United States,1945-1962[D].Virginia:Air Force Institute of Technology,2005
[13] 潘歧京,黄波.核化生武器与防护[M].北京:国防工业出版社,2004
[14] 汪致远.化学、生物武器与防化装备[M].北京:原子能出版社,2003
[15] 李其样,张振中.论化学武器的危害及其防护[J].山西科技,2007,1:103-106
[16] 刘永红,薛青,曹波伟,等.基于指令机制的作战Agent体系结构研究[C]∥全国仿真技术学术会议论文集.2011:120-123
[17] General and Specific Characteristics for HPAC Model[EB/OL].http://www.ofcm.gov/atd_dir/pdf/hpac.pdf,2006
[18] Warner S,Platt N,Heagy J F.Application of useroriented meas-ure of effectiveness to HPAC probabilistic predictions of Prairie Grass field trials[R].DASW01-98-C-0067.Institute for Defense Analyses,2001:275
[19] Lee R W.Moving the Hazard Prediction and Assessment Capability to a Distributed,Portable Architecture[R].Salt Lake Ci-ty:Springfield,2002
[20] Hill A.Using the Hazard Prediction and Assessment Capability(HPAC)Hazard Assessment Program for Radiological Scenarios Relevant to the Australian Defense Force[R].Victoria:DSTO Platforms Sciences Laboratory,2003
[21] 钟自鸣,黄健,龚建兴,等.BOM组件式仿真系统数据驱动方法[J].系统仿真学报,2009,1(21):6765-6769
[22] Albertsds,Hayesre.Understanding command and control [M].Washington D C:CCRP,2006:167-177

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!