参考文献/References:
[1]Muthurajan H, Sivabalan R, Talawar M B, et al.Computer simulation for prediction of performance and thermodynamic parameters of high energy materials[J].Journal of Hazardous Materials,2004,112(1-2):17-33.
[2]Muthurajan H, Sivabalan R, Talawar M B, et al.Prediction of heat of formation and related parameters of high energy materials[J]. Journal of Hazardous Materials,2006,133(1-3):30-45.
[3]吴雄,林如山.炸药爆轰性能的评价[J].火炸药,1980(5):30-33.
Wu Xiong,Lin Rushan. Detonation performance evaluation of explosives[J]. Explsives & Propellants, 1980(5):30-33.
[4]胡庆贤.关于炸药能量的讨论[J].火炸药学报,2000(2):42-44.
Hu Qingxian.Discussion about Explosive Energy[J].Chinese Journal of Explosives & Propellants,2000(2):42-44.
[5]何中其,黄磊,董艳丽,等.炸药爆轰性能的系统综合评估技术[C].第十届全国爆炸与安全技术学术会议论文集.昆明:2011.
He Zhongqi,Huang Lei,Dong Yanli,et al.Study on fuzzy comprehensive evaluation of detonation performance[C].Tenth national explosions and security technology conference.Kunming:2011.
[6]Shu Xiaozhou, Qiu Yin, Kuang Dingbo. Principal component analysis of TM images for monitoring inland water quality[M].Proceedings of SPIE,1999:460-464.
[7]何晓群.多元统计分析[M].3版.北京:中国人民大学出版社,2012.
[8]王鹏华,李源,汪文革.基于主成分分析的自行火炮作战效能评估[J].兵工自动化,2009(5):24-25.
Wang Penghua,LI Yuan,Wang Wen’ge.Combat effectiveness evaluation of selfpropelled artillery based on principal component analysis[J].Ordnance Industry Automation ,2009(5):24-25 .
[9]肖志成,刘小方,刘鲭洁.基于主成分分析和因子分析的导弹状态评估参数的优化[J].战术导弹技术,2011(4):23-29.
Xiao Zhicheng,Liu Xiaofang,Liu Qingjie.Optimization of missile health assessment parameters based on principle component analysis and factor analysis[J].Tactical Missile Technology, 2011(4):23-29.
[10]夏禹杰,邱彤,陈丙珍.主成分分析法在估算石脑油裂解参数中的应用[J].计算机与应用化学,2006(1):25-28.
Xia Yujie,Qiu Tong,Chen Bingzhen.The application of principal component analysis(PCA) on computiong of the parameters in naphtha pyrolysis[J].Computers and Applied Chemistry, 2006(1):25-28.
[11]钟一鹏,胡雅达,江宏志.国外炸药性能手册[M],北京:兵器工业出版社,1990.
[12]郑孟菊,俞统昌,张银亮.炸药的性能及测试技术[M].北京:兵器工业出版社,1990.
[13]《兵器工业科学技术辞典》编辑委员会.兵器工业科学技术辞典 火药与炸药[M],北京:国防工业出版社,1991.
[14]董艳丽.炸药爆轰性能的模糊综合评估技术研究[D].南京:南京理工大学,2010.
Dong Yanli.Study on fuzzy comprehensive evaluation of detontion performance[D].Nanjing: Nanjing University of Science and Technology, 2010.
[15]《炸药理论》编写组.炸药理论[M].北京:国防工业出版社.1982.
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