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A stochastic heuristic based approach to test vector reordering for dynamic test power reduction

机译:基于随机启发式的测试向量重排序方法,用于动态降低测试功率

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With the growth of IC technology, power minimization has become a serious concern for the test engineers. Power consumption in test mode is comparatively higher than in functional mode. This high power consumption during testing may generate too much heat which in turn can spoil the circuit under test. Considering the spectrum of low power testing approaches, reduction in dynamic power is viewed here as a sub-problem and resolved through test vector reordering. In this paper, an Enhanced Ant Colony Optimization (EACO) heuristic is applied to sort out an optimal order of test vectors so that switching activity during testing gets lessened. The simulation on ISCAS 85 bench mark test data set has shown promising power reduction when compared with simple ant colony optimization (ACO) and other relevant heuristic approaches.
机译:随着IC技术的发展,功耗最小化已成为测试工程师的严重关切。测试模式下的功耗相对高于功能模式下的功耗。测试期间的这种高功耗可能会产生过多的热量,进而可能损坏被测电路。考虑到低功耗测试方法的频谱,动态功耗的降低在这里被视为一个子问题,可以通过测试矢量重新排序来解决。在本文中,采用了一种改进的蚁群优化(EACO)启发式方法来分类测试向量的最佳顺序,从而减少了测试过程中的切换活动。与简单的蚁群优化(ACO)和其他相关的启发式方法相比,在ISCAS 85基准测试数据集上的仿真显示出有希望的功耗降低。

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