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Concurrently self-testing embedded checkers for ultra-reliable fault-tolerant systems

机译:并发自我测试嵌入式检查器,用于超可靠的容错系统

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In this paper it is shown how a self-checking checker can be designed to monitor systems with very few encoded outputs which are code words of an arbitrary separable error detection code. The checker is completely tested in normal operation mode, independent of the number of code words which are to be monitored. If an error has been indicated in normal operation mode the erroneous component of the system can be identified in test mode by the same hardware. A linear feedback shift register (LFSR) is included between the information bits of the outputs of the monitored systems and the inputs of the check-bit generator. A corrector (Cor) adjusts the check bits of the monitored system. The general systematic design method given in this paper is applied to parity codes, duplication codes, arithmetic codes and Berger codes. The approach is useful for the design of ultra-reliable fault-tolerant systems, especially for monitoring systems with very few outputs in normal operation mode.
机译:在本文中,显示了如何设计自检检查器来监视具有很少编码输出的系统,这些编码输出是任意可分离错误检测代码的代码字。该检查器在正常操作模式下已完全测试,与要监视的代码字的数量无关。如果在正常操作模式下已指示错误,则可以使用相同的硬件在测试模式下识别系统的错误组件。线性反馈移位寄存器(LFSR)包括在被监视系统的输出的信息位和校验位生成器的输入之间。校正器(Cor)调整受监视系统的检查位。本文给出的通用系统设计方法适用于奇偶校验码,重复码,算术码和Berger码。该方法对于设计超可靠的容错系统很有用,特别是对于在正常操作模式下输出很少的监视系统。

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