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首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >Fault Tolerant Parallel Filters Based on Error Correction Codes
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Fault Tolerant Parallel Filters Based on Error Correction Codes

机译:基于纠错码的容错并行滤波器

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摘要

Digital filters are widely used in signal processing and communication systems. In some cases, the reliability of those systems is critical, and fault tolerant filter implementations are needed. Over the years, many techniques that exploit the filters' structure and properties to achieve fault tolerance have been proposed. As technology scales, it enables more complex systems that incorporate many filters. In those complex systems, it is common that some of the filters operate in parallel, for example, by applying the same filter to different input signals. Recently, a simple technique that exploits the presence of parallel filters to achieve fault tolerance has been presented. In this brief, that idea is generalized to show that parallel filters can be protected using error correction codes (ECCs) in which each filter is the equivalent of a bit in a traditional ECC. This new scheme allows more efficient protection when the number of parallel filters is large. The technique is evaluated using a case study of parallel finite impulse response filters showing the effectiveness in terms of protection and implementation cost.
机译:数字滤波器广泛用于信号处理和通信系统。在某些情况下,这些系统的可靠性至关重要,因此需要采用容错滤波器。多年来,已经提出了许多利用滤波器​​的结构和特性来实现容错的技术。随着技术的发展,它使包含许多滤波器的更复杂的系统成为可能。在那些复杂的系统中,某些滤波器通常并行运行,例如,通过将同一滤波器应用于不同的输入信号。最近,提出了一种利用并行滤波器来实现容错的简单技术。在本摘要中,该思想被概括为表明可以使用纠错码(ECC)保护并行滤波器,其中每个滤波器等效于传统ECC中的一位。当并行滤波器的数量很大时,这种新方案可以提供更有效的保护。使用并行有限脉冲响应滤波器的案例研究对该技术进行了评估,该案例显示了保护和实施成本方面的有效性。

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