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An Experimental Evaluation of Datacenter Workloads On Low-Power Embedded Micro Servers

机译:低功耗嵌入式微型服务器上数据中心工作负载的实验评估

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This paper presents a comprehensive evaluation of an ultralow power cluster, built upon the Intel Edison based micro servers. The improved performance and high energy efficiency of micro servers have driven both academia and industry to explore the possibility of replacing conventional brawny servers with a larger swarm of embedded micro servers. Existing attempts mostly focus on mobile-class micro servers, whose capacities are similar to mobile phones. We, on the other hand, target on sensor-class micro servers, which are originally intended for uses in wearable technologies, sensor networks, and Internet-of-Things. Although sensor-class micro servers have much less capacity, they are touted for minimal power consumption (< 1 Watt), which opens new possibilities of achieving higher energy efficiency in datacenter workloads. Our systematic evaluation of the Edison cluster and comparisons to conventional brawny clusters involve careful workload choosing and laborious parameter tuning, which ensures maximum server utilization and thus fair comparisons. Results show that the Edison cluster achieves up to 3.5x improvement on work-done-per-joule for web service applications and data-intensive MapReduce jobs. In terms of scalability, the Edison cluster scales linearly on the throughput of web service workloads, and also shows satisfactory scalability for MapReduce workloads despite coordination overhead.
机译:本文介绍了基于基于英特尔Edison的微型服务器的超低功耗集群的综合评估。微型服务器的性能提高和高能效驱使学术界和工业界都在探索用更大数量的嵌入式微型服务器代替传统的强壮服务器的可能性。现有尝试主要集中在移动级微型服务器上,其能力类似于移动电话。另一方面,我们的目标是传感器级微型服务器,该服务器最初旨在用于可穿戴技术,传感器网络和物联网。尽管传感器级微型服务器的容量要小得多,但是它们被吹捧为具有最小的功耗(<1瓦),这为在数据中心工作负载中实现更高的能源效率开辟了新的可能性。我们对Edison群集的系统评估以及与常规粗壮群集的比较涉及仔细的工作量选择和费力的参数调整,这确保了最大的服务器利用率并因此进行了公平的比较。结果表明,对于Web服务应用程序和数据密集型MapReduce作业,爱迪生群集的每焦耳工作完成率提高了3.5倍。在可伸缩性方面,Edison群集在Web服务工作负载的吞吐量上线性扩展,并且尽管具有协调开销,但对于MapReduce工作负载也显示出令人满意的可伸缩性。

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