首页> 外文会议>SpaceOps conference >Using Quality Attributes to Bridge Systems Engineering Gaps: A Juno Ground Data System Case Study
【24h】

Using Quality Attributes to Bridge Systems Engineering Gaps: A Juno Ground Data System Case Study

机译:利用质量属性来桥接系统工程空白:juno地面数据系统案例研究

获取原文

摘要

The Juno Mission to Jupiter is the second mission selected by the NASA New Frontiers Program. Juno launched August 2011 and will reach Jupiter July 2016. Juno's payload system is composed of nine instruments plus a gravity science experiment. One of the primary functions of the Juno Ground Data System (GDS) is the assembly and distribution of the CFDP (CCSDS File Delivery Protocol) product telemetry, also referred to as raw science data, for eight out of the nine instruments. The GDS accomplishes this with the Instrument Data Pipeline (IDP). During payload integration, the first attempt to exercise the IDP in a flight like manner revealed that although the functional requirements were well understood, the system was unable to meet latency requirements with the as-is heritage design. A systems engineering gap emerged between Juno instrument data delivery requirements and the assumptions behind the heritage flight-ground interactions. This paper describes the use of quality attributes to measure and overcome this gap by introducing a new systems engineering activity, and a new monitoring service architecture that successfully delivered the performance metrics needed to validate Juno IDP.
机译:JUNO对木星的使命是美国宇航局新的前沿计划选择的第二任务。朱诺2011年8月推出,将达到木星2016年7月。朱诺的有效载荷系统由九乐器加上重力科学实验组成。 Juno地面数据系统(GDS)的主要功能之一是CFDP(CCSDS文件传递协议)产品遥测的装配和分配,也称为原始科学数据,其中八个九乐器。 GDS与仪器数据流水线(IDP)完成此操作。在有效载荷集成期间,首次尝试在类似方式中锻炼IDP的尝试揭示了虽然功能性要求很好地理解,但系统无法满足AS的遗产设计延迟要求。 juno仪器数据传递要求与遗产飞行地面互动背后的假设产生的系统工程缺口。本文介绍了使用质量属性来测量和克服该差距,通过引入新的系统工程活动以及成功提供验证Juno IDP所需的性能指标的新监控服务架构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号