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Test generation for iterative logic arrays based on an N-cube of cell states model

机译:基于单元状态N立方体的迭代逻辑阵列的测试生成

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The authors present a novel approach to the test generation problem for a more general class of two-dimensional iterative logic arrays (ILAs) than considered by previous researchers. For certain ILAs it is possible to find a test set whose size remains fixed irrespective of the size of the ILA, while for others it varies with array size. Given an arbitrary ILA cell truth table and a cell interconnection structure, the goal is to determine if a fixed-size test can be found. If not, then a test set whose size grows as slowly as possible with the size of the array should be found. The authors propose a new model, called the n-cube of cell states model, for representing the cell truth table and interconnection structure. The test generation problem is shown to be related to certain properties of cycles in a set of graphs obtained from this model. By careful analysis of these cycles, efficient testing schedules can be obtained. The proposed technique can be applied to unilateral as well as regular bilateral ILAs in which the bilateral direction of signal flow are restricted to lie along the horizontal axis.
机译:作者提出了一种比以前的研究人员所考虑的更通用的二维迭代逻辑数组(ILA)类型的测试生成问题的新颖方法。对于某些ILA,可以找到一个大小不变的测试集,而与ILA的大小无关,而对于其他ILA,它随阵列大小而变化。给定任意的ILA信元真值表和信元互连结构,目标是确定是否可以找到固定大小的测试。如果没有,那么应该找到一个测试集,其大小会随着数组的大小而尽可能缓慢地增长。作者提出了一种新的模型,称为n-cube of cell状态模型,用于表示单元真值表和互连结构。从该模型获得的一组图形中,证明测试生成问题与循环的某些属性有关。通过仔细分析这些周期,可以获得有效的测试计划。所提出的技术可以应用于单侧以及规则的双边ILA,其中信号流的双边方向被限制为沿着水平轴。

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