Demonstration platform for collaborative design of space science missions
-
摘要: 空间科学任务协同设计论证存在设计方案耦合强,数据一致性差,数据变更难,数据与流程脱节等问题.为了解决上述问题,建立了典型空间科学任务的多层数字化模型;采用图形化方式对论证流程进行建模,并建立流程与数据的映射关系;通过共享数据池的方式为多岗位用户提供多方案数据协同机制;采用消息总线对数据变更进行及时提醒;利用方案依赖关系矩阵来判别方案耦合关系,最终自动合并任务总体设计方案.作为一个分布式平台,空间科学任务协同设计平台采用Eclipse RCP和Spring技术架构,整合了Hibernate、工作流Activiti5等中间件,提供统一门户,支持多岗位、多任务、多方案、多版本的管理能力,提供论证流程监控、数据协同交互等功能.结合某空间科学任务论证验证了该平台的有效性.Abstract: There are several problems during the demonstration process of collaborative design of space science missions, such as strong coupling between sub-system solutions, poor data consistency, difficulty in data modification, and associated relationship between data and demonstration process. In order to solve these problems, a multi-layer digital model for typical space missions was proposed. The demonstration process was graphically modeled, and the mapping between the process and data was established. The shared data pool was provided as the data collaboration mechanism for all users and all sub-system solutions. The message bus was adopted as the timely reminder to notify the changes of data. The design solution coupling matrix was used to describe the coupling relationship between sub-system solutions and to gain the system solution for the missions by the automatically merged method. The demonstration platform, as a distributed platform for the collaborative design of space science missions, uses the technology architecture of Eclipse RCP and Spring and integrates the middlewares of Hibernate and Activiti5. The platform can provide a unified portal and support multi-user, multi-mission, multi-solution and multi-version data management, and also support process monitor and data interactive collaboration. A space mission was used as an example to verify the efficacy of the platform.
-
[1] 涂歆滢,杨雷. 国外航天器协同设计中心现状分析[J].航天器工程,2009,18(1):83-88. Tu X Y,Yang L.Overview of satellite concurrent design center[J].Spacecraft Engineering,2009,18(1):83-88(in Chinese). [2] Donald W M, Willian M P.Aerospace system design in NASA's collaborative engineering environment[J].Acta Astronautica,2000,47(2-9):255-264. [3] The ESA Concurrent Design Facility.Concurrent engineering applied to space mission assessments[EB/OL]. [2014-05-10].http://esa multimedia.esa.int/docs/cdf/CDF-INFOPACK-2011. pdf. [4] Karpati G, Martin J,Steiner M,et al.The Integrated Mission Design Center (IMDC) at NASA goddard space flight center[C]//Proceedings of the 2003 IEEE Aerospace Conference.Montana:IEEE Publications,2003:3657-3667. [5] Omid F V, Mahmoud H.A collaborative and integrated platform to support distributed manufacturing system using a service-oriented approach based on cloud computing paradigm[J].Robotics and Computer-Integrated Manufacturing,2013,29(1):110-127. [6] 章翔峰. 支持多学科协同设计的航天产品仿真数据管理系统[J].航天制造技术,2013(6):58-61. Zhang X F.Simulation data management system of aerospace product support MDO[J].Aerospace Manufacturing Technology,2013(6):58-61(in Chinese). [7] 李景新,颜丙新, 邓小静.型号计划与生产计划协同管理研究[J],机械设计与制造工程,2013,42(11):39-42. Li J X,Yan B X,Deng X J.Research on the collaborative management of the product plan and model plan[J].Machine Design and Manufacturing Engineering,2013,42(11):39-42(in Chinese). [8] 刘炫,王嘉春, 何清法.SOA在航天器数据共享平台中的应用与研究[J].微计算机信息,2010,26(28):192-193. Liu X,Wang J C,He Q F.Application and research of spacecraft data share platform based on SOA[J],Microcomputer Information,2010,26(28):192-193(in Chinese). [9] 孙建勋,张立强, 陈建江,等.飞行器总体多学科集成设计平台[J].计算机集成制造系统,2012,18(1):1-8. Sun J X,Zhang L Q,Chen J J,et al.Integrated design platform of conceptual multidisciplinary for aerocrafts[J].Computer Integrated Manufacturing Systems,2012,18(1):1-8(in Chinese). [10] 郭爱斌,米洁, 董晓琴,等.概念设计集成系统与星座方案探索[J],北京航空航天大学学报,2007,33(5):613-617. Guo A B,Mi J,Dong X Q,et al.Concept design integrated system and constellation architecture exploration[J].Journal of Beijing University of Aeronautics and Astronautics,2007,33(5): 613-617(in Chinese). [11] Wu X,Xu L, Jin L,et al.The MDO environment for hypersonic vehicle system design and optimization[C]//AIAA/ASME/SAE/ASEE 42nd Joint Propulsion Conference.Sacramento,CA:AIAA,2006:8327-8334. [12] 王振华,邓家褆, 隋鹏飞,等.复杂工程系统综合设计优化环境[J].北京航空航天大学学报,2007,33(2):192-196. Wang Z H,Deng J T,Sui P F,et al.Complex engineering system synthesis design optimization framework[J].Journal of Beijing University of Aeronautics and Astronautics,2007,33(2):192-196(in Chinese). [13] 孟新,杨震. 空间科学探测任务集同论证平台[J].科研信息化技术与应用,2011,2(3):55-65. Meng X,Yang Z.The space science mission concurrent design platform[J].E-Science Technology & Application,2011,2(3): 55-65(in Chinese). [14] 王书河,何麟书, 张玉珠.飞行器多学科设计优化软件系统[J].北京航空航天大学学报,2005,31(1):51-55. Wang S H,He L S,Zhang Y Z.Flight vehicles multidisciplinary design optimization software system[J].Journal of Beijing University of Aeronautics and Astronautics,2005,31(1):51-55(in Chinese). [15] 姚雯,陈小前, 赵勇.基于不确定性MDO的卫星总体优化设计研究[J].宇航学报,2009,30(5):1808-1815. Yao W,Chen X Q,Zhao Y.Research on satellite system design based on uncertainty multidisciplinary design optimization[J].Journal of Astronautics,2009,30(5):1808-1815(in Chinese). [16] 孙亚东,张旭, 宁汝新,等.面向多学科协同开发领域的集成建模方法[J].计算机集成制造系统,2013,19(3):449-460. Sun Y D,Zhang X,Ning R X,et al.Integrated modeling method oriented to multi-disciplinary collaborative development domain[J].Computer Integrated Manufacturing Systems,2013,19(3): 449-460(in Chinese).
点击查看大图
计量
- 文章访问数: 1129
- HTML全文浏览量: 137
- PDF下载量: 768
- 被引次数: 0