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Scheme for periodical concurrent fault detection in parallel CRC circuits

机译:并行CRC电路中的周期性并发故障检测方案

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As technology scales down, circuits are more prone to incur in faults and fault detection is necessary to ensure the system reliability. However, fault-detection circuits are also vulnerable to stuck-at faults due to, for example, manufacturing defects or ageing; a fault can cause an incorrect output in the fault-detection scheme; so concurrent fault detection is, therefore, needed. Cyclic redundancy checks (CRCs) are widely used to detect errors in many applications, for example, they are used in communication to detect errors on transmitted frames. In this study, an efficient method to implement concurrent fault detection for parallel CRC computation is proposed. The scheme relies on using a serial CRC computation circuit that is used to periodically check the results obtained from the main module to detect the faults. This introduces a lower circuit overhead than existing schemes. All CRC encoders and decoders that implement the CRC computation in parallel can employ the proposed scheme to detect faults.
机译:随着技术的缩减,电路更容易发生故障,因此必须进行故障检测以确保系统可靠性。然而,由于例如制造缺陷或老化,故障检测电路也容易发生卡住的故障。故障会导致故障检测方案中的输出不正确;因此,需要同时进行故障检测。循环冗余校验(CRC)在许多应用中广泛用于检测错误,例如,它们在通信中用于检测传输帧上的错误。在这项研究中,提出了一种用于并行CRC计算的并发故障检测的有效方法。该方案依赖于使用串行CRC计算电路,该电路用于定期检查从主模块获得的结果以检测故障。与现有方案相比,这引入了较低的电路开销。所有并行执行CRC计算的CRC编码器和解码器都可以采用建议的方案来检测故障。

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