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多管火箭弹引信感应装定技术与飞行时间修正方法
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摘要
随着战争形态从机械化向信息化转变,精确制导弹药在战争中发挥的作用越来越重要。敌方空袭的主要目标将是一些重点城市和要地,为了有效地开展城市和要地防空,必须研制一批能适应这些地理环境的武器装备以形成一套完善的陆上防空反导体系。本文研究的对象就是近程反导武器系统中的多管火箭弹引信电磁感应装定系统。
     本文从引信能量和信息非接触同步传输理论研究出发,对多管火箭弹引信感应装定技术开展了研究,设计了多管火箭弹引信感应装定系统。另一方面,应用加速度修正法在主动段的末端修正火箭弹的飞行时间,提高了炸点精度。
     本文首先研究了引信能量和信息非接触同步传输理论中的关键技术:引信感应装定技术、高效率功率放大技术和信息双向传输技术,作为本论文的理论基础。
     根据多管火箭武器系统的特点,选用了火箭弹发射前管内静态电磁感应装定方式来对火箭弹引信进行装定,从装定器电路的设计、引信接收与控制电路的设计、软件模块的设计和引信的小型化、低功耗、抗冲击技术等几个方面详细论述了多管火箭弹引信感应装定技术,该技术是火箭弹近程反导武器系统中的关键技术。
     研究了基于金属管的引信感应装定系统,提出了基于金属管的引信感应装定系统的概念。通过其与基于非金属管的引信感应装定系统的比较,得出了基于金属管的引信感应装定系统中初、次级线圈间能量和信息的耦合主要是通过电场的结论,分析了存在问题的原因,给出了解决方法,通过试验验证了该方法的可行性。
     火箭弹初速低、散布大的特点降低了火箭弹的命中概率,应用加速度修正法对引信飞行时间进行自适应修正。在对火箭弹外弹道数学模型分析的基础上,提出了影响火箭弹飞行时间的三个特征参数,经计算和曲线拟合,得出了修正公式。设计了火箭弹引信飞行时间自适应修正电路。
     抗干扰能力是衡量火箭弹引信感应装定系统的重要指标,本文从电磁兼容的定义出发,分析了电磁干扰传播的机理,接着从硬件和软件两方面介绍了多管火箭弹引信感应装定系统的抗干扰技术,给出了抗干扰的具体措施,设计了多管火箭弹引信感应装定系统的电磁屏蔽。
     在论文最后,以某多管火箭弹引信感应装定系统为应用平台,对设计的感应装定系统进行了静态试验和动态试验,试验结果表明多管火箭弹引信感应装定系统原理上是正确的,技术上是可行的。
With the transformation of war form from mechanization to informationization, precisionguided munition has become more and more important in warfare. The enemy's air attacktargets are main cities and key area. The ordnance equipment adaptive to the condition must bedeveloped to form a suit of perfect land air defense and antimissile system for main cities andkey area air defense. The research object of the dissertation is the electromagnetic inductivesetting system of multi-tube rocket fuze used in the field of close-in antimissile weapon system.
     The dissertation started with the theory study of fuze contactless synchronous transmissionof power and data. Research on inductive setting technique of multi-tube rocket fuze wasdeveloped and inductive setting system of multi-tube rocket fuze was designed. On the otherhand, the flying time of rocket was corrected at the end of active phase by accelerationcorrecting method to improve burst point precision.
     The key techniques of fuze contactless synchronous transmission of power and data theorywere studied first which are fuze inductive setting technique, efficient power amplifyingtechnique and information dual-direction transmission technique. The research items are used astheory foundation of the dissertation.
     Statically electromagnetic inductive setting method in tube before launching was selectedaccording to thecharacteristics of multi-tube rocket ordnance system. The inductive settingtechnique was introduced in detail from the followed aspects: design of setter circuit, design offuze's receiving and controlling circuit, design of software module and miniaturization, lowpower dissipation, shock resistant techniques of fuze. The technique is the key technique forclose-in antimissile ordnance system of rocket.
     Inductive setting system based on metal firing tube was studied and the concept ofinductive setting system based on metal firing tube was brought forward. By comparison withinductive setting system based on nonmetal firing tube, the conclusion was drawn that thecoupling of power and data between primary coil and secondary coil of inductive setting systembased on metal firing tube is mainly transmitted by electric field. Causation of the existedproblems was analyzed and solving methods were presented. The methods were proved to befeasible by experiment.
     The rocket is characterized by low launch speed and much dispersion, which result in lowhit probability. Acceleration correcting method was applied to correct flying time adaptively.Three characteristic parameters affecting rocket flying time were presented on the basis of the analysis of rocket's exterior ballistic model. Empirical formula was summarized by means ofcalculation and curve fitting. Flying time adaptive correcting circuit was designed.
     Anti-jamming capability is the important target to judge the performance of the inductivesetting system of multi-tube rocket fuze. Started with the definition of electromagneticcompatibility, transmitting mechanism of electromagnetic interference was elaborated.Anti-jamming technique of inductive setting system of multi-tube rocket fuze was clarifiedfrom both hardware aspect and software aspect. The anti-jamming measures were presented andthe electromagnetic screen of setting system was designed.
     The application target of the dissertation is the inductive setting system of multi-tuberocket fuze of a certain caliber. Static experiment and dynamic experiment were done and theresult indicated that the inductive setting system is correct in principle and feasible in technique.
引文
1 栾恩杰总主编.胡星光分卷主编国防科技名词大典(兵器卷)[G].北京:航空工业出版社,兵器工业出版社,原子能出版社,2002
    2 马宝华.引信构造与作用(内部发行)[M].北京:国防工业出版社,1984
    3 马宝华.网络技术时代的引信[C].中国兵工学会第十四届引信学术年会论文集,2005
    4 冯大权.功能奇特的现代引信[J].现代军事.2000,(9):46-47
    5 张学锋,马大为,彭绍春.某型火箭拦截巡航导弹命中概率分析[J].弹箭与制导学报.2005,25(2):75-78
    6 陈永新.伊拉克战争中弹药的使用特点及启示研究[C].中国兵工学会弹药专业委员会第三十一届学术年会论文集,2003:14-18
    7 石文斌,李胜军.科索沃战争中攻防对抗的几点分析[J].现代防御技术,2001,29(3):1-4
    8 徐国诚.高技术空袭与防空[M].北京:国防大学出版社,2000
    9 黎春林,冯顺山.超近程反导武器系统探讨[J].现代防御技术.2003,(1):12-15
    10 王稚.21世纪美军先进军事技术和武器系统[M].北京:解放军出版社,2002
    11 薄煜明,郭治等.高炮与防空导弹在近程防空反导中的互补性[J].兵工学报.2002,(2):164-166
    12 张学锋,马大为,彭绍春.某型火箭弹拦截巡航导弹命中概率分析[J].弹箭与制导学报.2005,(2):75-78
    13 张春来.近程反导武器系统[J].舰载武器.2002(1):29-32
    14 URL: http://news.sohu.com/20050521/n225652274.shtml
    15 URL: http://news.sohu.com/20050521/n225652330.shtml
    16 URL http://news.sohu.com/20050521/n225652385.shtml
    17 URL: http://news.sohu.com/20050521/n225652459.shtml
    18 王锋,潘书山,马大为等.弹箭结合武器系统作战效能评估的排队网络方法[J].弹箭与制导学报.2005,25(3):275-277
    19 张学锋.火箭武器防空反导效能研究与系统仿真(博士论文)[D].南京:南京理工大学,2006
    20 张世英,安邦海.舰载武器系统的新设想-新型多用途舰载火箭炮系统.URL:http://www.cetin.net.cn/storage/cetin2/p1/p11/zb-68.htm
    21 AOP-22, Design criteria and test methods for inductive setting of electronic projectile fuzes[S]. NATO Military Agency for Standardization(Edition 1), 1993
    22 STANAG 4369 PCS, Design requirements for inductive setting of electronic projectile fuzes[S]. NATO Military Agency for Standardization(Edition 1), 1996
    23 Frederick R Tepper. AC310/SGⅡ: Fuzing and other initiation systems[C]. The NDIA Annual Fuze Metting, 2000
    24 Mr. Homesh Lalbahadur. NATO and US initiation systems engineering standardization activeities[C]. The NDIA Fuze Conference, 2005
    25 Mr. Homesh Lalbahadur. NATO and US initiation systems engineering standardization activeities[C]. The NDIA Fuze Conference, 2004
    26 Mr. Homesh Lalbahadur. NATO fuze documents[C]. The 46th NDIA Fuze Conference, 2002
    27 URL: http://tianyablog.com/blogger/post_show.asp
    28 David Gudjohnsen, Marc Worthington. Development of the XM982 excalibur fuzing system[C]: The NDIA 49th Annual Fuze Conference, 2005
    29 Tank-automotive and armaments command. Design and development of a new electronic time fuze for mortars[C]. The NDIA 45th Annual Fuze Conference, 2001
    30 Keil, Robert E, Humbert, Randy E. 2001-1-23. Transmitter coil, improved fuze setter circuitry for adaptively tuning the fuze setter circuit for resonance and current difference circuitry for interpreting a fuze talkback message[P]. U. S. Patent, 6176168
    31 Fischer; Rainer, Rast; Kurt. 1992-6-2. Apparatus for setting the time fuze of a projectile [P]. U.S. Patent, 5117733
    32 Bob. Keil, Tom Kilian, Developing an automatic inductive fuze setter for crusader[C]. The NDIA 44th Annual Fuze Conference, 2000
    33 T. W. Walker, Andrew M. Leshchyshyn. Portable inductive artillery fuze setter(XM1155 PIAFS)[C]. The 44th Annual Fuze Conference, 2000
    34 T. W. Walker, Andrew M. Leshchyshyn. Enhanced portable inductive artillery fuze setter (EPIAFS)[C]. The 46th Annual Fuze Conference, 2002
    35 T. W. Walker, Andrew M. Leshchyshyn. The army's enhanced portable inductive artillery fuze setter(EPIAFS)[C]. The 49th Annual Fuze Conference, 2005
    36 R. Herlein. Excalibur: A multi-function fuze for a multi-purpose warhead[C]. The 46th annual fuze conference, 2002
    37 J. Q. Schmidt. 1987. Method and apparatus for setting a projectile fuze during muzzle exit [P]. U.S. Patent, 4649796
    38 J. Q. Schmidt. 1990. Automatically set fuze and communication link during muzzle exit[R]. AD-A227318
    39 J. Q. Schmidt. 1982. An automatic Velocity dependant delay system for use within and beyond the muzzle blast region of a gun[R]. AD-A121260
    40 郑传军.电子时间引信炮口感应装定技术及实验研究(博士论文)[D].南京:南京理工大学,1999
    41 陈熙,张冠杰,刘腾谊.35mm高炮技术基础[M].北京:国防工业出版社,2002
    42 王颂康,朱鹤松.高新技术弹药[M].北京:兵器工业出版社,1997
    43 Allan Buckley, Pierre Freymond. Air bursting munition ABM medium calibre applications[C]. The NDIA 45th Annual Fuze Conference, 2001
    44 纪霞,王利,杨昭.感应装定中影响信息传输的因素分析[C].中国兵工学会第十四届引信学术年会论文集,2005
    45 李林峰,何光林.GPS弹道修正引信炮口装定技术研究[C].中国兵工学会第十四届引信学术年会论文集,2005
    46 潘宗仁,陈力,张晓炜.膛内感应装定计转数引信技术初探[C].中国兵工学会第十四届引信学术年会论文集,2005
    47 沈宇超,沈树群.射频识别技术及其发展现状[M].电子技术应用,1999,(1):4-5
    48 [德]Klaus Finkenzeller,陈大才编译,王卓人审校.射频识别技术——无线电感应的应答器和非接触IC卡的原理与应用(第二版)[M].北京:电子工业出版社,2001
    49 沈广鸿.非接触IC卡系统研究与设计(硕士论文)[D].合肥:安徽大学,2002
    50 张河,李豪杰,马少杰.新军事变革过程中对引信发展的思考[C].中国兵工学会第十四届引信学术年会论文集,2005
    51 周晓东.引信能量和信息非接触传输系统设计理论及其应用研究(博士论文)[D].南京:南京理工大学,2005
    52 谭扬林.数字通信原理[M].长沙:湖南大学出版社,1999
    53 罗伟雄,韩力,原东昌等.通信原理与电路[M].北京:北京理工大学出版社,1999
    54 王学慧.感应供能与信息加载一体化传输技术研究—引信静态感应装定器耦合回路研究(硕士论文)[D].南京:南京理工大学,2004
    55 熊燕.小口径弹药用引信感应装定技术研究(硕士论文)[D].南京:南京理工大学,2005
    56 翟性泉,郑传军,何振才等.电子时间引信装定的数据编码与压缩方法[J].南京理工大学学报,1999,23(1):69-72
    57 翟性泉,郑传军,赖百坛.引信炮口快速装定的数据编码方法[J].兵工自动化,1999(1):24-27
    58 彭长清.时间引信设计[M].北京:国防工业出版社,1990
    59 林桂卿.电引信设计[M].北京:国防工业出版社,1990
    60 H. Sakamoto, K. Harada. A novel converter for non-contact charging through electromagnetic coupling[C]. IEEE Transactions on Magnetics. 1993, (6): 3228-3230
    61 高葆新,梁春广.高效率E类放大器[J].半导体技术,2001,26(8):44-48
    62 张肃文.高频电子线路(第四版)[M].北京:高等教育出版社,2004
    63 郝允群,庄奕琪,李小明.高效率E类射频功率放大器fJ].半导体技术,2004,29(2):74-76
    64 张涛,梁文林.E类功率放大器的一种优化设计方法lJl.洛阳工学院学报,2000,21(1):61-64
    65 胡长阳.D类和E类开关模式功率放大器[M].北京:高等教育出版社,1985
    66 欧姆社[日].电工电子通信公式应用手册[M].北京:科学出版社,2005
    67 周晓东,丁立波,张河.基于载荷调制的引信装定数据反向传输技术研究[J].弹箭与制导学报.2002(4):197-199
    68 Yamu Hu, Jean-Francois Gervais, M. Sawan. High power efficiency inductive link with full-duplex data communication[J]. IEEE Journal, 2002, 1: 359-362
    69 W. H. Ko, L Hynecek. Single frequency RF powered ECG telemetry system[C]. IEEE Trans. Biomed. Eng., 1979, 26(2): 105-109
    70 袁俊.国外巡航导弹技术发展综述[J].航空兵器.2000,(6):44-47
    71 李振吉,季向东.便携式防空导弹拦截巡航导弹可行性研究[J].军械工程学院学报,1999,11(4):33-35
    72 [日]电气学会半导体电力变换系统调查专门委员会编,陈国呈译.电力电子电路[M].北京:科学出版社.2003
    73 Linear公司数据手册.2004
    74 魏雄,庄乾成,鲍玉军等.低电压数字系统电源设计技术.URL:http://www.2lic.com/news/n13478c67.aspx
    75 秦曾煌.电工学(第四版)[M].北京:高等教育出版社,1998
    76 方德寿,方佼,杨达勇.实用电子技术手册[M].北京:国防工业出版社,1999
    77 何立民.单片机高级教程(应用与设计)[M].北京:北京航空航天大学出版社,2001
    78 江小华.小口径弹空炸引信计转数定距技术研究(博士论文)[D].南京:南京理工大学,2003
    79 张河,李豪杰,马少杰.新军事变革过程中对引信发展的思考[C].中国兵工学会第十四届引信学术年会论文集,2005
    80 吴兆华,周德俭.表面组装技术基础[M].北京:国防工业出版社,2002
    81 李刚,林凌.与8051兼容的高性能、高速单片机—C8051FXXX[M].北京:北京航空航天大学出版社,2002
    82 潘琢金.C8051FXXX高速SOC单片机原理及应用[M].北京:北京航空航天大学出版社,2002
    83 Dave Andersen, Don Wright. Advanced crew served weapon(ACSW)-XM307; Ammunition crew safety and precision air-burst[C]. The NDIA fuze conference, 2005
    84 周晓东,张河.引信体外射频电源技术研究[J].南京理工大学学报(自然科学版),2003,(2):148-150
    85 R.L.斯托尔.涡流分析[M].哈尔滨:黑龙江科学技术出版社,1983
    86 郑传军,翟性泉,何振才.引信作用时间炮口快速装定中火炮身管涡流特性的探讨[J].兵工自动化,1999,(2):24-25
    87 邹逢兴.电磁兼容技术[M].北京:国防工业出版社,2005
    88 徐明友.火箭外弹道学[M].北京:兵器工业出版社,1989
    89 徐顺利.一种新的无漂移磁通测量方法[J].南京大学学报(自然科学版),2001,(5):649-652
    90 闵杰,郭锡福.实用外弹道学[MJ.北京:兵器工业部教材编审室出版,1986
    91 郝红伟.Matlab6实例教程[M].北京:中国电力出版社,2002:
    92 ICSensors Calibration Data(Model: 3031-200), 2002
    93 [美]Texas Instruments Incorporated著,张卫宁编译.TMS320C28X系列DSP的CPU与外设(下)[M].北京:清华大学出版社,2005
    94 陆绮荣.电子测量技术[M].北京:电子工业出版社,2003
    95 杨克俊.电磁兼容原理与设计技术[M].北京:人民邮电出版社,2004
    96 朱元丽,朱元清,张尉.电磁干扰与电磁兼容性设计[J].电脑开发与应用,2000,(1):14-17
    97 GJB1389-92.系统电磁兼容性要求[S].中华人民共和国军用标准,1992
    98 GJB/Z17-91.军用装备电磁兼容性管理指南[S].中华人民共和国军用标准,1991
    99 中国人民解放军总装备部军事训练教材编辑工作委员会.电磁兼容技术[M].北京:国防工业出版社,2005
    100 唐海峰.人工智能在引信中的应用研究(博士论文)[D].南京:南京理工大学,2003
    101 新华龙电子有限公司.C805IF单片机使用注意事项.URL:http://www.xhl.com.cn
    102 纪铁刚.基于激光信息交联的穿甲弹用定距起爆控制技术研究(博士论文)[D].南京:南京理工大学,2005
    103 沙占友.数字化测量技术与应用(M).北京:机械工业出版社,2004
    104 MIL-STD-882C, System safety program requirements[S]. U.S. Department of Defense, 1993
    105 王卫民,齐杏林,范志锋等.引信软件的安全性特征分析[C].中国兵工学会第十四届引信学术年会论文集,2005
    106 丁立波.小口径空炸引信炸点控制技术研究(博士论文)[D].南京:南京理工大学,2004
    107 曹成茂.引信与武器系统信息交联中的遥控装定关键技术研究(博士论文)[D].南京:南京理工大学,2005
    108 马少杰.引信软件可靠性设计技术研究[J].南京理工大学学报.2003,27(4):439-441
    109 曹营军.引信软件的安全性[J].华北工学院测试技术学报.2000,11(4):247-251
    110 姚淳,郭祥玉.电磁屏蔽技术探讨.URL:http://www.21ic.com/news/n10241c67.aspx
    111 GJB1210-91.接地,搭接和屏蔽设计的实施[S].中华人民共和国军用标准,1991
    112 URL:http://www.eleccn.com/article_show.asp
    113 朱献中.指挥控制系统的发展[Z].南京:南京理工大学,2003
    114 张比升,张河.信息化下的小口径高炮近程防空反导体制中引信发展对策研究[J].探测与控制学报.2006,28(2):1-5

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