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Special issue on energy efficient multi-core and many-core systems, Part Ⅱ

机译:节能多核和多核系统特刊,第二部分

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摘要

Multi-core and many-core architectures have become conventional to meet performance requirements of emerging applications ranging from massively parallel data centers to ultra-low power embedded devices for the Internet-of-things. It is expected that the number of cores in these systems increases dramatically in the near future. For such systems, energy efficiency is one of the primary design constraints. The cessation of Dennard scaling and the dark silicon phenomenon have limited recent improvements in transistor speed and energy efficiency, resulting in slowed improvements in multi-core and many-core systems. Consequently, architectural innovations have become crucial to achieve performance and efficiency gains. In addition, multi-core and many-core systems need to be able to reconfigure themselves adaptively by monitoring their own condition and the surrounding environment in order to adapt to different scenarios and performance-power requirements. Runtime resource management becomes crucial in modern parallel and distributed multicore systems due to increase in thermal issues as well as due to the need for various adaptive management techniques to maximize energy efficiency.
机译:为了满足新兴应用程序的性能要求,从大型并行数据中心到物联网的超低功耗嵌入式设备,多核和多核架构已成为常规。预计在不久的将来,这些系统中的内核数量将急剧增加。对于此类系统,能效是主要设计约束之一。 Dennard缩放的停止和暗硅现象限制了晶体管速度和能效方面的最新改进,从而导致多核和多核系统的改进变慢。因此,架构创新对于实现性能和效率提升至关重要。此外,多核和多核系统需要能够通过监视自身的状况和周围环境来自适应地重新配置自身,以适应不同的场景和性能和功率要求。由于热量问题的增加以及由于需要各种自适应管理技术以最大化能源效率,运行时资源管理在现代并行和分布式多核系统中变得至关重要。

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