E. Bonilla, J. S. Britton, M.M. Gordon, M.P. Scheidt, R.P. Williams
{"title":"Automated generation of integrated architectures and end-to-end network models","authors":"E. Bonilla, J. S. Britton, M.M. Gordon, M.P. Scheidt, R.P. Williams","doi":"10.1109/AERO.2005.1559426","DOIUrl":null,"url":null,"abstract":"As systems and systems of systems become more prevalent and complex the need to tightly couple architectures and end-to-end network models and generate them automatically becomes imperative in order to maintain efficiencies, accuracy and detail. Network models that reflect true end-to-end architectures need to encompass terrestrial, wireless and satellite components and be highly detailed to truly represent all of the complexities in a worldwide communications network. Based on our experience as a systems integrator where we focus on end-to-end communications, systems architectures and integrated network models that reflect those architectures we have gained efficiencies and accuracy through our tools and processes. Our use of best-in-class tools including OPNET, satellite tool kit, Popkin System Architecttrade and their well known XML-friendly definitions, such as OPNET Modeler'strade data type description, or socket-based data transfer modules, such as STKtrade/Connect, enable the sharing of data between applications for more rapid development of end-to-end system architectures and a more complete system design. By sharing the results of and integrating best-in-class tools we are able to: (1) promote sharing of data; (2) enhance the fidelity of our results; and (3) allow network and application performance to be viewed in the context of the entire enterprise and its processes","PeriodicalId":117223,"journal":{"name":"2005 IEEE Aerospace Conference","volume":"34 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2005-03-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"4","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2005 IEEE Aerospace Conference","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/AERO.2005.1559426","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 4
Abstract
As systems and systems of systems become more prevalent and complex the need to tightly couple architectures and end-to-end network models and generate them automatically becomes imperative in order to maintain efficiencies, accuracy and detail. Network models that reflect true end-to-end architectures need to encompass terrestrial, wireless and satellite components and be highly detailed to truly represent all of the complexities in a worldwide communications network. Based on our experience as a systems integrator where we focus on end-to-end communications, systems architectures and integrated network models that reflect those architectures we have gained efficiencies and accuracy through our tools and processes. Our use of best-in-class tools including OPNET, satellite tool kit, Popkin System Architecttrade and their well known XML-friendly definitions, such as OPNET Modeler'strade data type description, or socket-based data transfer modules, such as STKtrade/Connect, enable the sharing of data between applications for more rapid development of end-to-end system architectures and a more complete system design. By sharing the results of and integrating best-in-class tools we are able to: (1) promote sharing of data; (2) enhance the fidelity of our results; and (3) allow network and application performance to be viewed in the context of the entire enterprise and its processes
随着系统和系统的系统变得越来越普遍和复杂,为了保持效率、准确性和细节,需要紧密耦合体系结构和端到端网络模型,并自动生成它们,这变得势在必行。反映真正的端到端架构的网络模型需要包含地面、无线和卫星组件,并且非常详细,以真正代表全球通信网络中的所有复杂性。基于我们作为系统集成商的经验,我们专注于端到端通信、系统架构和反映这些架构的集成网络模型,我们通过我们的工具和流程获得了效率和准确性。我们使用一流的工具,包括OPNET,卫星工具包,Popkin System architttrade及其众所周知的xml友好定义,如OPNET Modeler的贸易数据类型描述,或基于套接字的数据传输模块,如STKtrade/Connect,使应用程序之间的数据共享能够更快地开发端到端系统架构和更完整的系统设计。通过分享成果和整合一流的工具,我们能够:(1)促进数据共享;(2)提高结果的保真度;(3)允许在整个企业及其流程的上下文中查看网络和应用程序性能