A Broadcast-Enabled Sensing System for Embedded Multi-core Processors

Jia Zhao, Shiting Lu, W. Burleson, R. Tessier
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引用次数: 1

Abstract

Contemporary multi-core architectures deployed inembedded systems are expected to function near the operational limits of temperature, voltage, and device wear-out. To date, most on-chip sensing systems have been designed to collect and use sensor information for these parameters locally. In this paper, a new sensing system to enhance multi-core dependability which supports both the local and global distribution of sensing data in embedded processors is considered. The benefit of the new sensing architecture is verified using the broadcast of microarchitectural parameter signatures which can be used toidentify impending voltage droops. Low-latency broadcasts are supported for a range of sensor data transfer rates. Up to a 9% performance improvement for a 16-core system is determined via the use of the distributed voltage droop sensor information (5.4% on average). The entire sensing system, including broadcasting resources, requires about 2.6% of multi-core area.
嵌入式多核处理器的广播传感系统
部署在嵌入式系统中的当代多核架构预计将在温度、电压和器件损耗的操作极限附近运行。迄今为止,大多数片上传感系统已被设计为收集和使用这些参数的传感器信息。本文提出了一种新的传感系统,以提高多核可靠性,同时支持嵌入式处理器中传感数据的局部和全局分布。利用可用于识别即将发生的电压下降的微结构参数签名广播验证了新传感体系结构的优点。低延迟广播支持一系列传感器数据传输速率。通过使用分布式电压降传感器信息(平均5.4%),确定了16核系统高达9%的性能改进。整个传感系统,包括广播资源,大约需要2.6%的多核面积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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