FLARE: A design environment for FLASH-based space applications

M. Caramia, S. Carlo, M. Fabiano, P. Prinetto
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引用次数: 6

Abstract

Designing a mass-memory device (i.e., a solid-state recorder) is one of the typical issues of mission-critical space system applications. Flash-memories could be used for this goal: a huge number of parameters and trade-offs need to be explored. Flash-memories are nonvolatile, shock-resistant and power-economic, but in turn have different drawback: e.g., their cost is higher than normal hard disk and the number of erasure cycles is bounded. Moreover space environment presents various issues especially because of radiations: different and quite often contrasting dimensions need to be explored during the design of a flash-memory based solid-state recorder. No systematic approach has so far been proposed to consider them all as a whole: as a consequence a novel design environment currently under development is aimed at supporting the design of flash-based mass-memory device for space applications.
FLARE:基于flash的空间应用的设计环境
设计大容量存储设备(即固态记录仪)是关键任务空间系统应用的典型问题之一。闪存可以用于实现这一目标:需要探索大量的参数和权衡。闪存具有非易失性、抗冲击和节能的特点,但也有不同的缺点:例如,它们的成本比普通硬盘高,而且擦除周期的次数有限。此外,空间环境提出了各种问题,特别是由于辐射:在基于闪存的固态记录器的设计过程中,需要探索不同的、往往是截然不同的维度。到目前为止,还没有提出系统的办法来把它们作为一个整体加以考虑:因此,目前正在开发的一种新的设计环境旨在支持空间应用的基于闪存的大容量存储器设备的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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