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A cloud platform for space science mission concurrent design

机译:用于太空科学任务并发设计的云平台

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Using concurrent design methodology, the duration of space science mission in conceptual design phase can be shortened. This approach requires hardware and software resources to support, such as professional design tools and concurrent design environment. Except for the professional groups, the general researchers such as teachers and students have no chance to access these resources. Nowadays, more and more researchers distributed in different locations join into the space science research. The need for an open concurrent design platform offering design tools and data sharing environment has increased. This article presents a Cloud Platform of Concurrent Design for Space Science Mission. This Cloud Platform of Concurrent Design for Space Science Mission uses the idea of Software as a service, in which five design and analysis tools are offered as services to satisfy the basic requirements for space science mission concurrent design in conceptual design phase. This cloud platform provides the access to space science mission concurrent design for expert and non-expert users using a thin client of web browser. This article presents the platform architecture of the Cloud Platform of Concurrent Design for Space Science Mission and five software offered as services. The services include spacecraft conceptual orbit design, structure design, payload coverage analysis, data transmission analysis, and virtual community. And the basic cloud service (computing and storage) is also briefly introduced. It is described in detail how these services can be leveraged by users to do the concurrent design for one space science mission.
机译:使用并行设计方法,可以缩短概念设计阶段中太空科学任务的持续时间。这种方法需要硬件和软件资源来支持,例如专业设计工具和并行设计环境。除专业团体外,普通研究人员(如教师和学生)没有机会使用这些资源。如今,越来越多分布在不同位置的研究人员加入了空间科学研究。提供设计工具和数据共享环境的开放式并发设计平台的需求在增加。本文介绍了用于空间科学任务的并行设计云平台。该空间科学任务并行设计云平台使用软件即服务的思想,其中提供了五种设计和分析工具作为服务,以满足概念设计阶段对空间科学任务并行设计的基本要求。该云平台使用Web浏览器的瘦客户端为专家和非专家用户提供对空间科学任务并行设计的访问。本文介绍了空间科学任务并行设计云平台的平台架构以及作为服务提供的五种软件。服务包括航天器概念轨道设计,结构设计,有效载荷覆盖率分析,数据传输分析和虚拟社区。此外,还将简要介绍基本的云服务(计算和存储)。详细描述了用户如何利用这些服务为一项太空科学任务进行并行设计。

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