A high performance reliable dataflow based processor for space applications

M. Syed, G. Acher, T. Helfers
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引用次数: 2

Abstract

Conventional communication satellite payloads have the drawback to have their architecture fixed for the lifetime of the satellite (15 years) and therefore cannot adapt to changing communication standards and market/application evolution (like multimedia applications). A way to alleviate the rigidity is the use of onboard reconfigurable technology in order to be able to modify the processing of the signals performed onboard. Additionally, the increasing use of new earth-observation and communication technologies coupled with rapidly changing customer needs require a high performance and flexible processing technology for on-board data processing. The algorithmic and processing requirements for such processing are of a magnitude larger than those that could be successfully handled by classical processors. Therefore, there is a need for a powerful and flexible processor that can process large amounts of data at high speeds, and at the same time, is reconfigurable to adapt to changes. This paper gives an overview of the development at Astrium for in-orbit applications demanding high performance processing.
一种高性能可靠的基于数据流的空间应用处理器
传统通信卫星有效载荷的缺点是其结构在卫星的生命周期内(15年)是固定的,因此不能适应不断变化的通信标准和市场/应用的发展(如多媒体应用)。缓解刚性的一种方法是使用机载可重构技术,以便能够修改机载执行的信号处理。此外,越来越多地使用新的地球观测和通信技术,再加上快速变化的客户需求,需要一种高性能和灵活的机载数据处理技术。这种处理的算法和处理要求比经典处理器能够成功处理的要求要大得多。因此,需要一种强大而灵活的处理器,它可以高速处理大量数据,同时可以重新配置以适应变化。本文概述了Astrium在要求高性能处理的在轨应用方面的发展。
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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