空间应用中DDR存储器的EDAC方案比较

Sadia Ahmad, M. Zahra, S. Z. Farooq, A. Zafar
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引用次数: 11

摘要

空间应用中用于数据存储的DDR内存会出现不同的错误。这些误差是由宇宙辐射、太阳辐射、星系噪声、电磁辐射和太空极端温度等各种扰动引起的,这些扰动会破坏存储在DDR存储器中的数据。错误检测技术允许检测此类错误,而错误纠正可以重建原始数据。这些错误检测和纠正技术使数字数据能够在不可靠的通信信道上可靠地传递。本文着重对各种空间应用EDAC方案进行了比较分析。分析的基础是时间复杂度、空间复杂度、纠错和检测能力、码率和比特开销。本文对Hamming码、Hadamard码、Golay码、重复码、Berger码、单宇称码、四维宇称码、BCH码和Reed Solomon码进行了比较。得出的结论是,4D奇偶码最适合空间应用中的DDR存储器,因为它们更容易实现并且具有最高的码率与位开销比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of EDAC schemes for DDR memory in space applications
DDR memory used for data storage in space applications is subjected to different errors. These errors are caused by various perturbations such as cosmic radiations, solar radiations, galactic noise, electromagnetic radiations and extreme temperature in space, which can corrupt the data stored in the DDR memory. Error detection techniques allow detecting such errors, while error correction enables reconstruction of the original data. These error detection and correction techniques enable reliable delivery of digital data over an unreliable communication channel. This paper focuses on the comparative analysis of various EDAC schemes for space applications. The analysis is done on the basis of time complexity, space complexity, error correction and detection capabilities, code rate and bit overhead. This paper includes comparison of Hamming, Hadamard, Golay, Repetition, Berger, Single Parity, Four Dimensional Parity, BCH and Reed Solomon Codes. It is concluded that 4D parity codes are best suited for DDR memories in space applications, since they are easier to implement and have highest code rate to bit overhead ratio.
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