CAREER: Energy-Efficient Datacenters with Wireless Interconnection Networks
CAREER: Energy-Efficient Datacenters with Wireless Interconnection Networks
批准号:
1553264
负责人:
Amlan Ganguly
金额:
$59.65万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-02-01 至 2024-01-31
中文摘要
该职业的主要目标:无线互联网络节能数据中心项目旨在通过集成芯片内和芯片间无线网络来建立无线数据中心的设计原则。世界各地的计算机器消耗的能源数量惊人。据《纽约时报》2012年9月报道,像数据中心这样的数字仓库用电量为300亿瓦,相当于30座核电站的发电量。在数据中心、服务器和高性能计算(HPC)等所有计算机器中,网络计算元素无处不在。数以万计的多核芯片相互连接,形成一个完整的数据中心,使得网络在整个系统的性能和能效中发挥着至关重要的作用。在大型计算机器中,不同芯片中的核心或存储组件之间的数据传输需要穿越网络不同级别的各种互联技术,往往需要更改交换协议,从而导致开销。更重要的是,根据国际半导体技术路线图(ITRS),芯片间互连的节距没有芯片内互连的节距扩展得那么快,导致未来的性能差距。此外,芯片内和芯片外互连的布线复杂性会带来设计挑战、串扰和信号完整性问题,从而加剧问题。最近的研究设想使用毫米波(毫米波)技术来设计芯片上网络的片上无线互连,与传统架构相比,芯片上网络的能效明显更高。另一方面,近年来已经进行了大量的研究,以开发使用相同的60 GHz未经许可的无线频谱的无线数据中心。本文提出的集成体系结构将能够在数据中心内的通信处理核心之间建立无线路由。这个高度跨学科的项目将吸引来自学术界和工业界的计算机工程、计算机科学和电气工程学科的专家。该项目将利用计算机体系结构、通信、集成电路封装和数据中心等多个领域的概念和技术,为大型计算仓库建立无线互联方法,以降低其能源消耗和碳足迹,最终产生绿色和可持续的计算范式。
英文摘要
The principal aim of this CAREER: Energy-Efficient Datacenters with Wireless Interconnection Networks project is to establish design principals of a wireless datacenter by integrating intra- and inter-chip wireless networks. Computing machinery around the world consumes staggering amounts of energy. According to the NY Times in September 2012, digital warehouses like datacenters use thirty billion watts of electricity, which is equivalent to the output of thirty nuclear power plants. Networked computing elements are omnipresent in all computing machinery like datacenters, servers and High Performance Computing (HPC). Tens to thousands of multicore chips are interconnected to form an entire datacenter making the role of the network paramount in the performance and energy efficiency of the entire system. Data transfer between cores or memory components in different chips in large computing machinery need to traverse various interconnection technologies at the different levels of the network, often requiring change of switching protocols thus resulting in overheads. More importantly, according to the International Technology Roadmap for Semiconductors (ITRS), the pitch of the interchip interconnects is not scaling as fast as the pitch of on-chip interconnects, resulting in a performance gap in the future. Additionally, the wiring complexity of both on-chip and off-chip interconnects exacerbates the problem by posing design challenges, crosstalk and signal integrity issues. Recent research envisions on-chip wireless interconnects using millimeter-wave (mm-wave) technologies for designing Network-on-Chips, which are significantly more energy-efficient compared to traditional architectures. On the other hand in recent years considerable research has been done to develop wireless datacenters using the same 60GHz unlicensed wireless spectrum. The integrated architecture proposed in this work will be capable of establishing wireless routes between communicating processing cores in a datacenter. This highly interdisciplinary project will engage experts from the disciplines of computer engineering, computer science and electrical engineering from both academia and industry. Using concepts and technologies from various domains like computer architecture, communication, integrated circuit packaging and datacenters, the project will establish methodologies for wireless interconnections in large-scale computing warehouses to decrease their energy consumption and carbon footprint, ultimately resulting in a green and sustainable computing paradigm.
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专著(0)
科研奖励(0)
会议论文
Collaborative Research: Workshop Series on Sustainable Computing
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批准号:2126011
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项目类别:Standard Grant
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资助金额:$6.34万
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财政年份:2021
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负责人:Amlan Ganguly
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依托单位:
IUCRC: Planning Grant: RIT: Center for Smart Spaces Research (CSSR)
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批准号:2113905
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项目类别:Standard Grant
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资助金额:$1.93万
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财政年份:2021
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负责人:Amlan Ganguly
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依托单位:
SHF: CSR: Medium: Collaborative Research: Hierarchical On-Chip Millimeter-Wave Wireless Micro-Networks for Multi-Core Systems
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批准号:1162123
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项目类别:Continuing Grant
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资助金额:$13.59万
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财政年份:2012
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负责人:Amlan Ganguly
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依托单位:
国内基金
海外基金
度量测度空间上基于狄氏型和p-energy型的热核理论研究
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批准号:QN25A010015
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项目类别:省市级项目
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资助金额:--
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批准年份:2025
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负责人:高晋
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依托单位: