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首页> 外文期刊>Journal of Electronic Testing: Theory and Applications: Theory and Applications >Functionally Fault-tolerant DSP Microprocessor using Sigma-delta Modulated Signals
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Functionally Fault-tolerant DSP Microprocessor using Sigma-delta Modulated Signals

机译:使用Sigma-Delta调制信号的功能容错DSP微处理器

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摘要

The occurrence of soft-faults in digital circuits due to single event upsets (SEU) caused by particle hits has been reported in many works, and it has been claimed that, as the transistor dimensions shrink, multiple and simultaneous faults will be a common scenario in future technologies. Many techniques have been proposed to cope with these kinds of faults, most of them based on hardware or software redundancy. In this work, we present a new paradigm, which is based on signal redundancy, that is, the signal to be processed will contain a certain amount of redundancy, in such a way that, even under the occurrence of multiple faults, the final results will sustain a good resolution for some applications. A DSP microprocessor that uses the technique was prototyped, and some results are presented and compared to typical n-bits binary coded DSP microprocessor architecture, showing the advantages of using the proposed approach.
机译:在许多工作中已经报道了由于粒子撞击导致的单事件翻转(SEU)而在数字电路中发生软故障的现象,并且据称随着晶体管尺寸的缩小,多重故障和同时故障将是常见的情况。在未来的技术中。已经提出了许多技术来应对这些类型的故障,其中大多数基于硬件或软件冗余。在这项工作中,我们提出了一个基于信号冗余的新范例,即,要处理的信号将包含一定量的冗余,这样,即使在出现多个故障的情况下,最终结果在某些应用中将保持良好的分辨率。使用该技术的DSP微处理器被原型化,并给出了一些结果,并将其与典型的n位二进制编码DSP微处理器体系结构进行了比较,显示了使用该方法的优势。

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