基于分布图的功率约束块测试调度方法与扩展树生长技术

Valentin Muresan, Xiaojun Wang, Valentin Muresan, M. Vladutiu
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引用次数: 2

摘要

提出了一种基于分布图的调度算法,并结合扩展的树生长技术来解决功耗约束下的不等长块测试调度问题。将扩展树生长技术与经典调度方法相结合,在给定功耗限制的情况下提高测试并发性。其目标是通过采用最小均方误差函数来实现平衡的测试功耗。最小均方误差函数是基于分布图的全局优先级函数。最后通过测试调度实例和实验验证了该方法在系统级测试调度算法中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distribution-graph based approach and extended tree growing technique in power-constrained block-test scheduling
A distribution-graph based scheduling algorithm is proposed together with an extended tree growing technique to deal with the problem of unequal-length block-test scheduling under power dissipation constraints. The extended tree growing technique is used in combination with the classical scheduling approach in order to improve the test concurrency having assigned power dissipation limits. Its goal is to achieve a balanced test power dissipation by employing a least mean square error function. The least mean square error function is a distribution-graph based global priority function. Test scheduling examples and experiments highlight in the end the efficiency of this approach towards a system-level test scheduling algorithm.
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