使用基于以通信为中心的自动调优的电源配置文件监视器的冷冻安全物联网休眠

Hyeongyun Moon, Jeonghun Cho, Daejin Park
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引用次数: 2

摘要

物联网系统是由异构物之间的不规则链路连接而成的,容易受到不需要的异常状态引起的快速错误传播的影响。我们经常增加系统监控电路,以防止由于这个问题而无法解决的冻结。然而,该领域的实际方法导致设计过度规范,以涵盖所有未知问题,从而消耗大量额外的功率。在本文中,我们采用了两种有效的方法来解决这一问题:在以通信为中心的片上系统(SoC)中,为实现嵌入式硬件和软件的低功耗运行而有效地重新配置电源状态参数,以及在处理器之间的不规则链路大规模构建下的设计空间探索框架。考虑到实验中soc的大规模连接,系统可以在非常宽的监测主动周期内安全运行,并且还可以降低功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Freeze-Safe IoT Hibernation using Power Profile Monitor Based on Communication-Centric Auto-Tuning
IoT systems, which are connected with irregular links between heterogeneous things, are vulnerable to fast error propagation caused by unwanted abnormal statuses. We often add system monitoring circuits to protect against unresolved freezing due to this problem. However, practical approaches in the field result in the over-specification of designs to cover all unknown problems, so that a large amount of additional power is consumed. In this paper, we adopt two ways to solve this problem efficiently: the effective reconfiguration of power state parameters for the low-power operations of embedded hardware and software in a communication-centric system-on-chip (SoC), and a design-space-exploration framework under the large-scale construction of irregular links between the processors. Given the large-scale connection of SoCs for the experiment, the system can be safely operated with a very wide monitoring active cycle, and power consumption can also be reduced.
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