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In this paper, we propose an efficient and scalable low rank matrix completion algorithm. The key idea is to extend the orthogonal matching pursuit method from the vector case to the matrix case. We further propose an economic version of

In this paper, we propose an efficient and scalable low rank matrix completion algorithm. The key idea is to extend the orthogonal matching pursuit method from the vector case to the matrix case. We further propose an economic version of our algorithm by introducing a novel weight updating rule to reduce the time and storage complexity. Both versions are computationally inexpensive for each matrix pursuit iteration and find satisfactory results in a few iterations. Another advantage of our proposed algorithm is that it has only one tunable parameter, which is the rank. It is easy to understand and to use by the user. This becomes especially important in large-scale learning problems. In addition, we rigorously show that both versions achieve a linear convergence rate, which is significantly better than the previous known results. We also empirically compare the proposed algorithms with several state-of-the-art matrix completion algorithms on many real-world datasets, including the large-scale recommendation dataset Netflix as well as the MovieLens datasets. Numerical results show that our proposed algorithm is more efficient than competing algorithms while achieving similar or better prediction performance.

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Title
  • Orthogonal Rank-One Matrix Pursuit for Low Rank Matrix Completion
Contributors
Date Created
2014-11-30
Resource Type
  • Text
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    Identifier
    • Digital object identifier: 10.1137/130934271
    • Identifier Type
      International standard serial number
      Identifier Value
      1095-7197
    • Identifier Type
      International standard serial number
      Identifier Value
      1064-8275
    Note
    • Link to published article.

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    Wang, Zheng, Lai, Ming-Jun, Lu, Zhaosong, Fan, Wei, Davulcu, Hasan, & Ye, Jieping (2015). ORTHOGONAL RANK-ONE MATRIX PURSUIT FOR LOW RANK MATRIX COMPLETION. SIAM JOURNAL ON SCIENTIFIC COMPUTING, 37(1). http://dx.doi.org/10.1137/130934271

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