高速二维卷积/相关器的容错性

L. M. Napolitano, D. Andaleon, K. Berry, P. R. Bryson, S. R. Klapp, J. Leeper, G. Redinbo
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引用次数: 1

摘要

介绍了一种利用广义相关滤波算法在二维图像中定位三维目标的专用计算机Starloc (Sandia target location computer)。Starloc使用商用浮点处理器执行高速二维卷积/相关,其设计以容错为核心特征。它的基本架构包括10个管道级(8个用于快速傅里叶变换(FFT)处理,2个用于逐像素加权),排列成环形结构,其中包括两个热备用级,用于替换任何故障级。保护技术从位级奇偶校验通过基于算法的方法被使用。所有通过分布式部分和在分布式部分内涉及内存的数据路径都由标准二进制纠错码覆盖。浮点处理器被复制并被适当的比较电路包围,以检测故障,而整个系统功能由基于算法的检查保护。双位片顺序器使用内部比较器,FFT和加权部分中的常规内存寻址使用容错计数器。原型机的设计和制造已经完成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault-tolerance in a high-speed 2D convolver/correlator: Starloc
Starloc (Sandia target location computer), a special-purpose computer for locating 3D objects in a 2D image using a generalized correlation filter algorithm, is described. Starloc performs high-speed 2D convolution/correlation using commercially available floating-point processors and was designed with fault tolerance as a central feature. Its basic architecture consists of ten pipeline stages (eight for fast Fourier transform (FFT) processing and two for pixel-by-pixel weighting), arranged in a ringlike structure that includes two hot-standby stages for replacing any failed stage. Protection techniques from bit-level parity up through algorithm-based methods are used. All data paths involving memory through and within the distributed sections are covered by standard binary error-correcting codes. The floating-point processors are duplicated and surrounded by appropriate comparison circuits to detect failures while the overall system function is protected by algorithm-based checks. Dual bit-slice sequencers use internal comparators and the regular memory addressing in both FFT and weighting sections uses fault-tolerant counters. Design and fabrication of a prototype have been completed.<>
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