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Applying a Cloud Computing Approach to Storage Architectures for Spacecraft

机译:应用云计算方法对航天器的存储架构

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As sensor technologies, processor speeds, and memory densities increase, spacecraft command, control, processing, and data storage systems have grown in complexity to take advantage of these improvements and expand the possible missions of spacecraft. Spacecraft systems engineers are increasingly looking for novel ways to address this growth in complexity and mitigate associated risks. Looking to conventional computing, many solutions have been executed to solve both the problem of complexity and heterogeneity in systems. In particular, the cloud-based paradigm provides a solution for distributing applications and storage capabilities across multiple platforms. In this paper, we propose utilizing a cloud-like architecture to provide a scalable mechanism for providing mass storage in spacecraft networks that can be reused on multiple spacecraft systems. By presenting a consistent interface to applications and devices that request data to be stored, complex systems designed by multiple organizations may be more readily integrated. Behind the abstraction, the cloud storage capability would manage wear-leveling, power consumption, and other attributes related to the physical memory devices, critical components in any mass storage solution for spacecraft. Our approach employs Space Wire networks and SpaceWire-capable devices, although the concept could easily be extended to non-heterogeneous networks consisting of multiple spacecraft and potentially the ground segment.
机译:作为传感器技术,处理器速度和内存密度增加,航天器指挥,控制,处理和数据存储系统已经发展到复杂性,以利用这些改进,并扩大航天器可能的任务。宇宙飞船系统工程师越来越多地寻找一种解决复杂性和减轻相关风险的新颖方法。寻求传统计算,已经执行了许多解决方案以解决系统中复杂性和异质性的问题。特别地,基于云的范例提供了用于在多个平台上分发应用程序和存储能力的解决方案。在本文中,我们建议利用类似云架构来提供可扩展机制,用于在可以在多个航天器系统上重复使用的航天器网络中的大容量存储。通过向要存储的数据提供一致的应用程序和设备,由多个组织设计的复杂系统可以更容易地集成。在抽象后面,云存储能力将管理与物理存储器设备相关的磨损升级,功耗和其他属性,在空间的任何大容量存储解决方案中的关键组件。我们的方法采用了空间网络和能够的太空设备的设备,尽管该概念可以很容易地扩展到由多个航天器和潜在的地面段组成的非异构网络。

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