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    青年学者学术报告Efficient and Exact Methods for Big Data Reduction
    发布时间:2019-05-14 09:28:29

    南京大学计算机软件新技术国家重点实验室

       

    摘 要:

    Big data concerns growing data sets with a huge number of samples, very high-dimensional feature vectors, and complex and diverse structures. Many traditional techniques are inadequate to extract knowledge and insights from these data sets due to their ever-greater volume and complex structures. An encouraging discovery of the early empirical studies on big data was the recognition that many massive real-world data sets can be well interpreted by a few number of features and/or samples. For example, given certain visual stimulus, the fraction of active neurons at that instance is small. This observation enlightens an emerging research area known as sparse learning that has achieved great success in learning from large and complex data by uncovering a small set of most explanatory features and/or samples. Typical examples include selecting features that are the most indicative of users’ preferences for recommender systems, identifying brain regions that are predictive of brain disorder based on fMRI data, and extracting semantic information from raw images for object recognition. Despite of the great success, the learning process of sparse learning methods on large and complex data can be very time-consuming due to their nonsmooth and highly complex regularization terms. To address this, we propose a suite of novel techniques, called screening, to quickly identify the redundant features and/or samples---that can be removed from the training phase---without losing useful information of interests. Success in these unique screening techniques is expected to dramatically scaling up sparse learning methods for large and complex data in terms of efficiency and memory usage, by several orders of magnitude. This will significantly expand the use of sparse learning methods to much bigger data sets that were previously impossible, leading to direct impact on many fields where sparse learning is critical, e.g., social media mining, brain data analytics, and imaging genetics.

    报告人简介:

    Jie Wang is a Professor at University of Science and Technology of China (USTC). He received his BS in electronic information science and technology from USTC in 2005 and his PhD in computational science in 2011 from the Florida State University. Then, he went on to conduct his postdoctoral work at Arizona State University followed by the University of Michigan. Before joining USTC, Dr. Wang held a position of research assistant professor at University of Michigan from 2015. He has broad interests in artificial intelligence, machine learning, data mining, natural language processing, image processing, and large-scale optimization etc. He has published many papers on top machine learning and data mining journals and conferences such as JMLR, TPAMI, NIPS, ICML, and KDD. He is the PI of the research project funded by National Science Fund for Excellent Young Scholars.

    时间:5月16日  10:00-11:00

    地点:计算机科学技术楼230室

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    友情链接:
    江苏省科学技术协会 中国计算机学会 南京大学 南京大学计算机科技与技术系 南京大学软件学院 东南大学计算机科学与工程学院 江苏经贸职业技术学院 南京信息职业技术学院 南京工业职业技术学院 江苏海事职业技术学院 常州信息职业技术学院 国网电力科学研究院 电子科技集团第28研究所 江南计算技术研究所 
       
     

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