火力与指挥控制
火力與指揮控製
화력여지휘공제
FIRE CONTROL & COMMAND CONTROL
2014年
3期
165-169
,共5页
流程建模%SA Simulator%体系结构%导弹防御
流程建模%SA Simulator%體繫結構%導彈防禦
류정건모%SA Simulator%체계결구%도탄방어
process modeling%SA Simulator%systems of systems%missile defense
静态体系结构模型中的各种要素以及它们之间的信息流是以静态的方式描述的,无法显露体系结构设计的薄弱环节和瓶颈。对此,基于SA Simulator流程仿真工具,开展了流程模型的建模与仿真。通过对SA Simulator流程仿真工具的原理及仿真流程的分析,以美国导弹防御系统为背景,在明确其主要作战要素(作战任务、作战节点及作战过程)之后,使用SA Simulator该流程仿真工具,基于IDEF3方法建立了导弹防御指控流程模型;从IDEF3规则、进程流的属性设置及关系配置与分配两个方面对模型进行验证。最后,进行流程仿真,研究了战略指控系统节点使用率、活动平均执行时间对指控流程的性能影响,并提出了相应的改进措施,以改进、优化导弹防御指控体系结构。
靜態體繫結構模型中的各種要素以及它們之間的信息流是以靜態的方式描述的,無法顯露體繫結構設計的薄弱環節和瓶頸。對此,基于SA Simulator流程倣真工具,開展瞭流程模型的建模與倣真。通過對SA Simulator流程倣真工具的原理及倣真流程的分析,以美國導彈防禦繫統為揹景,在明確其主要作戰要素(作戰任務、作戰節點及作戰過程)之後,使用SA Simulator該流程倣真工具,基于IDEF3方法建立瞭導彈防禦指控流程模型;從IDEF3規則、進程流的屬性設置及關繫配置與分配兩箇方麵對模型進行驗證。最後,進行流程倣真,研究瞭戰略指控繫統節點使用率、活動平均執行時間對指控流程的性能影響,併提齣瞭相應的改進措施,以改進、優化導彈防禦指控體繫結構。
정태체계결구모형중적각충요소이급타문지간적신식류시이정태적방식묘술적,무법현로체계결구설계적박약배절화병경。대차,기우SA Simulator류정방진공구,개전료류정모형적건모여방진。통과대SA Simulator류정방진공구적원리급방진류정적분석,이미국도탄방어계통위배경,재명학기주요작전요소(작전임무、작전절점급작전과정)지후,사용SA Simulator해류정방진공구,기우IDEF3방법건립료도탄방어지공류정모형;종IDEF3규칙、진정류적속성설치급관계배치여분배량개방면대모형진행험증。최후,진행류정방진,연구료전략지공계통절점사용솔、활동평균집행시간대지공류정적성능영향,병제출료상응적개진조시,이개진、우화도탄방어지공체계결구。
The various elements and the flow of information between them are described in a static manner in static Systems of Systems (SoS),the bottleneck can not be found out by model designers consequently. Therefore,process model is established and simulated by SA Simulator tool. Through analyzing the principle and simulation process of SA Simulator tool,taking U.S. missile defense system as the research background,the Command and Control (C2) of missile defense process model is established based on IDEF3 method after understanding the main operational factors such as combat missions,operational nodes and operational process. The model is validated from two aspects: IDEF3 rule,property setting of process flow and configuration and relationship distribution. Finally,the node utilization of strategic C2 systems as well as the average execution time of strategic C2 is studied to know the effects on C2 process capability through simulation,and the corresponding improvement measures are put forward to .improve and optimize the missile defense SoS.