首页> 外文会议>Modeling, systems engineering, and project management for astronomy IV >Collaborative engineering and design management for the HobbyEberly Telescope tracker upgrade
【24h】

Collaborative engineering and design management for the HobbyEberly Telescope tracker upgrade

机译:HobbyEberly望远镜跟踪器升级的协同工程和设计管理

获取原文
获取原文并翻译 | 示例

摘要

The engineering and design of systems as complex as the Hobby-Eberly Telescope's* new tracker require that multiple tasks be executed in parallel and overlapping efforts. When the design of individual subsystems is distributed among multiple organizations, teams, and individuals, challenges can arise with respect to managing design productivity and coordinating successful collaborative exchanges. This paper focuses on design management issues and current practices for the tracker design portion of the Hobby-Eberly Telescope Wide Field Upgrade project. The scope of the tracker upgrade requires engineering contributions and input from numerous fields including optics, instrumentation, electro-mechanics, software controls engineering, and site-operations. Successful system-level integration of tracker subsystems and interfaces is critical to the telescope's ultimate performance in astronomical observation. Software and process controls for design information and workflow management have been implemented to assist the collaborative transfer of tracker design data. The tracker system architecture and selection of subsystem interfaces has also proven to be a determining factor in design task formulation and team communication needs. Interface controls and requirements change controls will be discussed, and critical team interactions are recounted (a group-participation Failure Modes and Effects Analysis [FMEA] is one of special interest). This paper will be of interest to engineers, designers, and managers engaging in multi-disciplinary and parallel engineering projects that require coordination among multiple individuals, teams, and organizations.
机译:与Hobby-Eberly Telescope的新型跟踪器一样复杂的系统工程和设计,要求多个任务并行且重叠地执行。当各个子系统的设计分布在多个组织,团队和个人之间时,在管理设计生产率和协调成功的协作交流方面可能会遇到挑战。本文重点关注Hobby-Eberly望远镜广域升级项目的跟踪器设计部分的设计管理问题和当前实践。跟踪器升级的范围需要工程学方面的贡献,并需要众多领域的投入,包括光学,仪器仪表,机电,软件控制工程以及现场操作。跟踪器子系统和接口的成功系统级集成对于望远镜在天文观测中的最终性能至关重要。已经实现了用于设计信息和工作流管理的软件和过程控件,以辅助跟踪器设计数据的协作传输。跟踪器系统的体系结构和子系统接口的选择也被证明是设计任务制定和团队沟通需求的决定因素。将讨论界面控制和需求变更控制,并重述关键团队的互动(小组参与的失败模式和效果分析[FMEA]是特别令人感兴趣的内容)。从事跨学科和并行工程项目的工程师,设计师和经理,需要多个个人,团队和组织之间进行协调,将使本文感兴趣。

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