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Fault-Tolerant Systems with Concurrent Error-Locating Capability

机译:具有并发错误定位功能的容错系统

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Fault-tolerant systems have found wide applications in military, industrial and commercial areas. Most of these systems are constructed by multiple-modular redundancy or error control coding techniques. They need some fault-tolerant specific components (such as voter, switcher, encoder, or decoder) to implement error-detecting or error-correcting functions. However, the problem of error detection, location or correction for fault-tolerance specific components themselves has not been solved properly so far. Thus, the dependability of a whole fault-tolerant system will be greatly affected. This paper presents a theory of robust fault-masking digital circuits for characterizing fault-tolerant systems with the ability of concurrent error location and a new scheme of dual-modular redundant systems with partially robust fault-masking property. A basic robust fault-masking circuit is composed of a basic functional circuit and an error-locating corrector. Such a circuit not only has the ability of concurrent error correction, but also has the ability of concurrent error location. According to this circuit model, for a partially robust fault-masking dual-modular redundant system, two redundant modules based on alternating-complementary logic consist of the basic functional circuit. An error-correction specific circuit named as alternating-complementary corrector is used as the error-locating corrector. The performance (such as hardware complexity, time delay) of the scheme is analyzed.
机译:容错系统已在军事,工业和商业领域中得到了广泛的应用。这些系统中的大多数是通过多模块冗余或错误控制编码技术构建的。他们需要一些容错的特定组件(例如表决器,切换器,编码器或解码器)来实现错误检测或错误纠正功能。但是,到目前为止,对于容错特定组件本身的错误检测,定位或校正的问题尚未得到适当解决。因此,整个容错系统的可靠性将受到很大影响。本文提出了一种用于描述具有并发错误定位能力的容错系统的鲁棒故障屏蔽数字电路的理论,以及一种具有部分鲁棒故障屏蔽特性的双模冗余系统的新方案。基本的鲁棒故障掩蔽电路由基本功能电路和误差定位校正器组成。这样的电路不仅具有并发错误校正的能力,而且还具有并发错误定位的能力。根据该电路模型,对于部分鲁棒的故障屏蔽双模块冗余系统,两个基于交变互补逻辑的冗余模块由基本功能电路组成。称为交变互补校正器的特定于纠错电路被用作错误定位校正器。分析了该方案的性能(如硬件复杂度,时间延迟)。

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