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CC-IIE Networking Infrastructure: KGEN: Next-generation networking environments for biological and agricultural data-driven research at Kansas State University

CC-IIE Networking Infrastructure: KGEN: Next-generation networking environments for biological and agricultural data-driven research at Kansas State University
CC-IIE 网络基础设施:KGEN:堪萨斯州立大学生物和农业数据驱动研究的下一代网络环境
批准号:
1440548
负责人:
Daniel Andresen
金额:
$23.15万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-10-01 至 2016-09-30

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中文摘要
翻译
该项目增强了堪萨斯州立大学的内部网络能力,以支持科学和工程领域的高端应用,特别是生物信息学。目前的研究正在转向大型数据集,其中典型的千兆或更少的桌面网络连接瓶颈生产力。该项目通过提供比目前可用的网络快一个数量级的网络来消除千兆瓶颈,这阻碍了堪萨斯州立大学的研究人员与本地和远程合作伙伴进行充分有效的合作。该项目还为K-12、社区学院和堪萨斯州范围内的学者提供了一个研究和教育推广的试验平台,以探索生物信息学、基因组学、高通量表型分析和高性能计算。堪萨斯州立大学正在安装具有40 GbE核心和大量10 GbE端口的企业级路由器,为升级堪萨斯州立大学生物信息学研究人员的网络容量到他们的主要研究实验室提供基础,包括KSU校园超级计算机集群、节肢动物基因组学中心和综合基因组学设施的端到端连接。这影响了16个地点的研究人员、数百名研究生和数百万美元的资助研究。改进的连通性使科学家在建模基因组时能够更深入地研究,从而能够开发用于表型分析和生物信息学的新算法。这些进展反过来有助于保护国家的粮食供应,通过发展更好地了解对主要农产品的威胁,如攻击小麦作物的黑森蝇,或确定提高抗旱性的基因。
英文摘要
This project enhances the internal networking capabilities at Kansas State University to support high-end applications in science and engineering, particularly bioinformatics. Current research is moving towards large datasets, where typical desktop network connectivity of one gigabit or less bottlenecks productivity. This project eliminates the gigabit bottleneck by providing an order of magnitude faster networking than currently available, which is preventing researchers at Kansas State from fully and effectively collaborating with both local and distant partners. This project also provides a testbed for research and educational outreach to K-12, community-college, and Kansas-wide academics to explore bioinformatics, genomics, high-throughput phenotyping, and high performance computing.Kansas State University is installing enterprise-grade routers with a 40GbE core and plentiful 10GbE ports to provide a foundation for upgrading KSU's bioinformatics researchers' network capacity to their major research labs, including end-to-end connectivity for KSU's campus supercomputer cluster, the Arthropod Genomics Center, and the Integrated Genomics Facility. This impacts researchers across 16 locations, hundreds of graduate students, and millions of dollars in funded research.The improved connectivity allows scientists to look deeper when modeling genomes, enabling new algorithms to be developed for phenotyping and bioinformatics. These advancements in turn help protect the nation's food supply through developing better understanding of threats to key agricultural products like the Hessian fly, which attacks wheat crops, or determining genes which improve drought resistance.
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