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安全博弈理论及应用
时间:2017-05-11 15:30    点击:   所属单位:软件学院
讲座名称 安全博弈理论及应用
讲座时间 2017-05-18 14:30:00
讲座地点 北校区图书馆西裙三楼报告厅
讲座人 安波
讲座人介绍
英文简介:
Bo An is Nanyang Assistant Professor with the School of Computer Engineering, Nanyang Technological University, Singapore. His current research interests include artificial intelligence, multiagent systems, game theory, and optimization. He has published over 40 referred papers at AAMAS, IJCAI, AAAI, ICAPS, JAAMAS and IEEE Transactions. Dr. An was the recipient of the 2010 IFAAMAS Victor Lesser Distinguished Dissertation Award, an Operational Excellence Award from the Commander, First Coast Guard District of the United States, the Best Innovative Application Paper Award at AAMAS’12, and the 2012 INFORMS Daniel H. Wagner Prize for Excellence in Operations Research Practice. He is a member of the Board of Directors of IFAAMAS.
 
中文简介:
安波是新加坡南洋理工大学计算机科学与工程学院的南洋助理教授,于2011年在美国麻省大学Amherst分校获计算机科学博士学位。主要研究领域包括人工智能、多智能体系统、博弈论、及优化。有70余篇论文发表在人工智能领域的国际顶级会议AAMAS、IJCAI、AAAI、ICAPS、KDD以及著名学术期刊JAAMAS、AIJ、ACM\IEEE Transactions。曾获2010年国际智能体及多智能体系统协会(IFAAMAS)杰出博士论文奖、2011年美国海岸警卫队的卓越运营奖、2012年国际智能体及多智能体系统年会(AAMAS)最佳应用论文奖、2016年人工智能创新应用会议(IAAI)创新应用论文奖,以及2012年美国运筹学和管理学研究协会(INFORMS)Daniel H. Wagner杰出运筹学应用奖等荣誉。受邀在2017年国际人工智能联合会议(IJCAI)上做Early Career Spotlight talk. 他是Journal of Artificial Intelligence Research (JAIR)编委会成员以及Journal of Autonomous Agents and Multi-agent Systems (JAAMAS)的副主编。当选为国际智能体及多智能体系统协会理事会成员。
讲座内容
Security is a critical concern around the world, whether it’s the challenge of protecting ports, airports and other critical national infrastructure, or protecting wildlife and forests, or suppressing crime in urban areas. In many of these cases, limited security resources prevent full security coverage at all times; instead, these limited resources must be scheduled, avoiding schedule predictability, while simultaneously taking into account different target priorities, the responses of the adversaries to the security posture and potential uncertainty over adversary types. Computational game theory can help design such unpredictable security schedules and new algorithms are now deployed over multiple years in multiple applications for security scheduling. These applications are leading to real-world use-inspired research in computational game theory in scaling up to large-scale problems, handling significant adversarial uncertainty, dealing with bounded rationality of human adversaries, and other interdisciplinary challenges. This talk will discuss some recent research progress on computational game theory for security based on results published at recent AAMAS/AAAI/IJCAI conferences.
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