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Reliability Analysis of the SHyLoC CCSDS123 IP Core for Lossless Hyperspectral Image Compression Using COTS FPGAs

机译:使用COTS FPGA的Shyloc CCSDS123 IP核的可靠性分析缺损高光谱图像压缩

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摘要

Hyperspectral images can comprise hundreds of spectral bands, which means that they can represent a large volume of data difficult to manage with the available on-board resources. Lossless compression solutions are interesting for reducing the amount of information stored or transmitted while preserving it at the same time. The Hyperspectral Lossless Compressor for space applications (SHyLoC), which is part of the European Space Agency (ESA) IP core’s library, has been demonstrated to meet the requirements of space missions in terms of compression efficiency, low complexity and high throughput. Currently, there is a trend to use Commercial Off-The-Shelf (COTS) on-board electronic devices on small satellites. Moreover, commercial Field-Programmable Gate Arrays (FPGAs) have been used in a number of them. Hence, a reliability analysis is required to ensure the robustness of the applications to Single Event Upsets (SEUs) in the configuration memory. In this work, we present a reliability analysis of this hyperspectral image compression module as a first step towards the development of ad-hoc fault-tolerant protection techniques for the SHyLoC IP core. The reliability analysis is performed using a fault-injection-based experimental set-up in which a hardware implementation of the Consultative Committee for Space Data Systems (CCSDS) 123.0-B-1 lossless compression standard is tested against configuration memory errors in a Xilinx Zynq XC7Z020 System-on-Chip. The results obtained for unhardened and redundancy-based protected versions of the module are put into perspective in terms of area/power consumption and availability/protection coverage gained to provide insight into the development of more efficient knowledge-based protection schemes.
机译:高光谱图像可以包括数百个光谱带,这意味着它们可以表示难以使用可用的车载资源来管理的大量数据。无损压缩解决方案可有趣,用于减少在同时保留时存储或传输的信息量。对于空间应用(Shyloc)的高光盘无损压缩机(Shyloc)是欧洲航天局(ESA)IP核心图书馆的一部分,已经证明了在压缩效率,低复杂性和高吞吐量方面满足空间任务的要求。目前,在小型卫星上使用商业现货(COTS)电子设备存在趋势。此外,商业领域可编程门阵列(FPGA)已被用于许多。因此,需要一种可靠性分析来确保应用程序在配置存储器中的单个事件上限(SEU)的稳健性。在这项工作中,我们提出了对该高光谱图像压缩模块的可靠性分析,作为朝向Shyloc IP核心开发的Ad-Hoc容错保护技术的第一步。使用基于故障注入的实验设置进行可靠性分析,其中空间数据系统协商委员会(CCSDS)123.0-B-1无损压缩标准的硬件实施是以Xilinx Zynq中的配置内存错误进行测试的XC7Z020片上系统。在获得的面积/功耗和可用性/保护覆盖范围内,在获得的基于冗余和基于冗余的保护版本的结果获得的结果,以便在开发更高效的基于知识的保护方案的发展方面。

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