English

Approximate Message Passing with Unitary Transformation for Robust Bilinear Recovery

Information Theory 2021-02-24 v3 math.IT

Abstract

Recently, several promising approximate message passing (AMP) based algorithms have been developed for bilinear recovery with model Y=k=1KbkAkC+W\boldsymbol{Y}=\sum_{k=1}^K b_k \boldsymbol{A}_k \boldsymbol{C} +\boldsymbol{W} , where {bk}\{b_k\} and C\boldsymbol{C} are jointly recovered with known Ak\boldsymbol{A}_k from the noisy measurements Y\boldsymbol{Y}. The bilinear recover problem has many applications such as dictionary learning, self-calibration, compressive sensing with matrix uncertainty, etc. In this work, we propose a new bilinear recovery algorithm based on AMP with unitary transformation. It is shown that, compared to the state-of-the-art message passing based algorithms, the proposed algorithm is much more robust and faster, leading to remarkably better performance.

Keywords

Cite

@article{arxiv.2005.14132,
  title  = {Approximate Message Passing with Unitary Transformation for Robust Bilinear Recovery},
  author = {Zhengdao Yuan and Qinghua Guo and Man Luo},
  journal= {arXiv preprint arXiv:2005.14132},
  year   = {2021}
}

Comments

11 pages, 12 figures