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A strongly fault-secure and strongly code-disjoint realization of combinational circuits

机译:一种强烈的断层安全和强烈的代码脱节组合电路的实现

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Strongly fault-secure (SFS) circuits are known to achieve the totally self-checking (TSC) goal of producing a noncodeword as the first erroneous output due to a fault. Strongly code-disjoint (SCD) circuits are known to always map noncodeword inputs to noncodeword outputs, even in the presence of faults, as long as the faults remain undetected. The authors present a general design method for SFS and SCD combinational circuits for the previously proposed fault model that covers the broad classes of likely faults in VLSI. In the design, the input and output of a combinational circuit are encoded in systematic unordered codes whose check part is obtained by adding two extra bits to the check part of any known systematic unordered code. Thanks to the uniform input/output encoding and the SCD property for the proposed combinational circuits, a number of the circuits can be interconnected in cascade to construct a larger SFS combinational circuit if each interface is sufficiently exercised.
机译:众所周知,强烈断层安全(SFS)电路实现了产生非电源字的完全自检(TSC)目标,作为由于故障引起的第一个错误输出。众所周知,即使在存在故障的情况下,也已知强烈的代码脱编(SCD)电路始终将非端字输入映射到非线文输出,只要断层仍未被检测到。作者呈现了SFS和SCD组合电路的一般设计方法,用于先前提出的故障模型,涵盖VLSI中的广泛类别的故障。在设计中,组合电路的输入和输出在系统的无序代码中被编码,其检查部分是通过向任何已知系统无序代码的检查部分添加两个额外比特而获得的检查部分。由于统一的输入/输出编码和所提出的组合电路的SCD属性,如果每个接口充分地锻炼,则可以在级联中互连多个电路以构造较大的SFS组合电路。

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