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1)  efficiency of fuze warhead coordination
引战配合效率
1.
Based on an analysis of fuze warhead coordination,evaluation of the efficiency of fuze warhead coordination is taken as made up of two parts: the design efficiency and the bursting model efficiency Their quantitative expressions are derived and their applications are discussed regarding the choice of fuze systems and the optimization of bursting model
本文通过对引战配合效率过程的分析 ,提出将评定引战配合的效率指标分成有明确物理意义的两个组成部分 :引信设计效率和起爆控制效率 ,推导了它们的定量表达式 ,并分析了它们在引信体制选择和起爆控制模型优化设计等方面的应用。
2)  coordination of fuze and warhead
引信和战斗部配合效率
1.
In this paper, based on the randomization of the burst delaytime of the proximity fuze for missiles, one kind of brief method estimating the efficiency of the coordination of fuze and warhead is presented and its probable applications has been discussed.
在导弹近炸引信起爆延时具有随机性基础上,建立一种用延时及其数学特征表示的评定引信和战斗部配合效率的简便方法,并对有关应用问题进行了讨论。
3)  fuse-warhead coordination
引战配合
1.
Taking the infrared sensor terminal-sensitive projectiles as an investigated subject,a target capture method and a fuse-warhead coordination of a kind of terminal-sensitive projectiles were studied.
以红外末敏感子弹药为对象,研究了红外末敏感子弹药的目标捕获方法与引战配合。
4)  fuze-warhead coordination
引战配合
1.
Aiming at the damage characteristic of demolition warhead,a new mode of fuze-warhead coordination that missile detonates with the mode of proximity burst while flying over target,and contact explosion in other state of missile and target encountering,was put forward.
针对空地反辐射导弹爆破式战斗部的毁伤特性,提出了一种导弹飞过目标近炸,其它弹目交会情况触发起爆的新的引战配合方式。
2.
Approaches of static consistency inspection between computer simulation and real test results of fuze-warhead coordination (FWC) are given in this paper.
给出了引战配合计算机仿真结果与真实试验结果进行静态一致性检验的方法。
3.
In order to improve the efficiency of fuze-warhead coordination under high speed missile-target encounter condition,according to the optimization rule of software radio fuze antenna beam forming and it s trait and requirement,a fuze antenna beamforming algorithm based on linearly constrained minimum variance(LCMV) is put forward.
针对如何提高防空导弹在高速弹目交会条件下的引战配合效率,根据软件无线电引信天线波束形成的特点和要求,研究了一种基于线性约束最小方差准则的引信天线波束自适应控制算法。
5)  fuze warhead matching
引战配合
1.
This text aims at the antiaircraft weapon material,analyzes the key technique of the fuze warhead matching.
防空导弹技术的迅速发展和武器装备的不断更新,对防空导弹的训练应用仿真技术提出了较高的要求,着眼于地面防空武器,分析了引战配合的关键技术,首先建立引战配合的数学模型,然后在此基础上介绍防空导弹引战配合仿真系统,最后对引信、战斗部和目标的作用过程进行动态仿真,给出了仿真结果以及战斗部破片的动态飞散区域图形。
2.
Aiming at actuality that the fuze of fixed angle of Air defence missile can obtain relative miss azimuth,by researching and synthetically analyzing,then put forward an identifying technology of relative miss azimuth based on the fuze target of fixed angle,provided a feasible method for improving the efficiency design of fuze warhead matching.
为使防空导弹定角引信具备获取目标相对脱靶方位角的能力,通过研究和综合分析,提出了定角引信目标相对脱靶方位角的识别技术途径,为提高引战配合效率设计提供了一种可行的方法。
3.
In the course of missile target intersection, the early or late of miss azimuth has important affection on the efficiency of fuze warhead matching.
弹目交会过程中的“早晚到”脱靶方位对引战配合效率有重要影响,利用引信探测目标回波多普勒频率结合导引头提高的弹目相对速度信息可以识别“早晚到”脱靶方位,并修正引战配合延时规律,从而提高引战配合效率
6)  fuze warhead coordination
引战配合
1.
Combining the course of fuze warhoead coordination, this article introduces the main content of the fuze warhead coordination visualization and the software and hardware enviroments neccessary for realizing the fuze warhead coordination visualization.
结合引战配合过程 ,介绍了引战配合可视化所涉及的主要内容和实现引战配合可视化所需的软硬件环境。
2.
Starting from the fentures of a multi beam fragmentation focus warhead,this paper proposes researching a basic method for fuze warhead coordination characteristics.
从多束破片聚焦式杀伤战斗部的特点出发,提出研究引战配合特性的基本方法,并以某双束聚焦式杀伤战斗部为例进行了应用计算。
补充资料:外轨配合物和内轨配合物
      根据L.C.鲍林的价键理论,具有八面体结构并有4个未成对电子的、顺磁性的[CoF6]3-,或有5个未成对电子的、顺磁性的[Fe(H2O)6]3+,其配位成键杂化轨道为4s4p34d2,所用d 轨道与s和p轨道是属于同一主能级的。这类具有nsnp3nd2形式的配合物(见配位化合物), 因为使用了外层的d轨道,所以叫做外轨配合物。两种配合物的杂化成键轨道分别如图所示。对于具有八面体结构且所有电子都是成对的、抗磁性的[Co(NH3) 6]3+, 或具有1个未成对电子的、 顺磁性的[Fe(CN)6]3-,其成键杂化轨道为3d24s4p3,使用了比s和p轨道低一级主能级层中的d轨道。这类具有(n-1)d2nsnp3型式的配合物,由于使用了内层的d轨道,所以叫做内轨配合物。
  
  在四配位体系中,具有四面体结构且有两个未成对电子的顺磁性的[NiCl4] 2-,其成键杂化轨道为4s4p3,属外轨配合物。而所有电子都成对的、抗磁性的[Ni(CN)4]2-,其成键杂化轨道为3d4s4p2,是平面正方形结构,属内轨配合物。两种配合物的杂化成键轨道如图所示。
  

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