from    
to    
search  

 


卫健学术沙龙:基于5G+人工智能的心理/精神健康服务与管理体系建设
Gauging spacetime inversions
AI合成化学前沿与战略研讨会暨国家智能化学数据中心启动会
Macro to micro- and nano-scale fluidic engineering for analytical chemistry
报告题目:
Building Cyberinfrastructure and Science Gateways for 21st Century Scientific Research
 报告人:
Dr. Xiaohui (Carol) Song
Senior Research Scientist, Purdue University
报告时间:
2006-07-04 15:30
报告地点:
3-125, FIT Building
主办单位:
清华信息科学与技术国家实验室
  简介:

 

 Dr. Xiaohui (Carol) Song is a Senior Research Scientist at Purdue University. Dr. Song received a B.S. degree in computer science from Tsinghua University in 1982. She received her Ph.D. degree in 1992 from the University of Illinois at Urbana-Champaign for her dissertation on concurrency control algorithms in hard real-time systems. While working on her Ph.D. degree, she worked at NCSA (UIUC) for five years on visualization software for scientific applications. Dr. Song was a software architect and product development manager at 3M and WAM!Net corporations where she participated and led the development and commercialization of a number of software products for medical imaging applications and wide-area, data center systems. She also represented these corporations at the international standards working groups. Dr. Song founded a startup company in year 2000 to develop innovative remote access software for handheld devices (e.g., PDA, smart phones). As Principal Investigator and President of the company, she was awarded a National Science Foundation Small Business Innovative Research award and a research grant from the State of Indiana’s 21st Century Technology fund. Dr. Song joined the Rosen Center for Advanced Computing at Purdue University in August 2005. Her research interests include service-oriented architecture, grid computing middleware and tools, and mobile and pervasive computing software architecture.

 

Abstract

Rosen Center for Advanced Computing at Purdue University is a research computing center that provides advanced computing and storage services to research scientists in various scientific disciplines. We have embarked on a number of major cyber infrastructure projects in recent years. The TeraGrid project is an ambitious undertaking to build and operate the world’s largest and most comprehensive grid computing cyberinfrastructure for open scientific research. Purdue is one of the nine partner universities that provide computing and storage resources, as well as application and data services to the TeraGrid. The Network for Computational Nanotechnology (NCN), centered at Purdue, is a multi-million dollars per year research project that aims at connecting theory, experimentation and computation by supplying research-grade online simulations and educational content services at production level quality. The nanoHUB is being integrated into major grids, including the TeraGrid and OSG, providing users transparent access to the resources on such grids. This presentation will provide the audience with an overview of these projects, their goals and major challenges and the technical accomplishments. Through this presentation and discussions, the speaker hopes to identify common interests from researchers and explore potential opportunities for future collaboration among the high performance computing communities at Purdue and Tsinghua.

今日相关信息
The optical vortex coronagraph and th...
Electricity Price Models with Jumps a...
西方美术史系列讲座(二)
Applications of Biocatalysis in Drug ...
 
同类别相关信息
2013年度周光召基金会获奖者清华论坛
FROM AVALANCHES TO PACKINGS: The Ph...
流浪动物的福利问题――如何帮助校园流浪...
Multiscale Flow Simulations Using P...
第17届IUAES“相处之道”人类学影像展...
学术活动