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A Distributed Concurrent On-Line Test Scheduling Protocol for Many-Core NoC-Based Systems

机译:基于核心NoC的系统的分布式并发在线测试调度协议

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Concurrent on-line testing (COLT) of many-core systems-on-chip (SoC) has been recently proposed by researchers in response to the growing threat of electronic wear-out to system operational lifetimes and to the increasing reliability and availability demands of safety-critical applications. Previous research in concurrent on-line testing has focused on centralized approaches to manage core testing while the system is available to execute normal user applications. However, as technology scaling allows dozens and hundreds of processing cores to be placed on a single chip, these centralized approaches are not scalable solutions. In this paper, a distributed concurrent on-line test scheduling protocol is proposed and evaluated against previously developed solutions. Our experiments show that a distributed COLT scheduler can test a moderately-sized SoC with a speedup of 3.85 over centralized approaches while consuming 84% less energy, and performance benefits improve as the number of cores per chip increases. This research also presents a core test ordering algorithm - Code-Division Core Test Scheduling - that provides an additional 40% reduction in system test latency compared to other schedulers.
机译:最近通过研究人员提出了许多核心系统(SOC)的同时测试(SOC),以应对系统运营寿命的越来越多的电子磨损威胁以及增加的可靠性和可用性需求安全关键型应用。以前的并发在线测试的研究专注于集中式方法来管理核心测试,而系统可用于执行普通用户应用程序。然而,随着技术缩放允许数十个和数百个加工芯放置在单个芯片上,这些集中方法不是可扩展的解决方案。本文提出了一种分布式并发在线测试调度协议,并评估先前开发的解决方案。我们的实验表明,分布式调度COLT可以通过集中的方式测试一个中等规模的SoC与3.85的加速,同时消耗84%的能量较少,且性能优势,如提高每个芯片上增加的内核数量。该研究还提出了一种核心测试订购算法 - Code-Divion核心测试调度 - 与其他调度程序相比,在系统测试延迟的额外减少了40%。

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