Approximate Message Passing with Restricted Boltzmann Machine Priors
February 23, 2015 Β· Declared Dead Β· π arXiv.org
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Authors
Eric W. Tramel, AngΓ©lique DrΓ©meau, Florent Krzakala
arXiv ID
1502.06470
Category
cs.IT: Information Theory
Cross-listed
cond-mat.dis-nn,
physics.data-an,
stat.ML
Citations
34
Venue
arXiv.org
Last Checked
6 months ago
Abstract
Approximate Message Passing (AMP) has been shown to be an excellent statistical approach to signal inference and compressed sensing problem. The AMP framework provides modularity in the choice of signal prior; here we propose a hierarchical form of the Gauss-Bernouilli prior which utilizes a Restricted Boltzmann Machine (RBM) trained on the signal support to push reconstruction performance beyond that of simple iid priors for signals whose support can be well represented by a trained binary RBM. We present and analyze two methods of RBM factorization and demonstrate how these affect signal reconstruction performance within our proposed algorithm. Finally, using the MNIST handwritten digit dataset, we show experimentally that using an RBM allows AMP to approach oracle-support performance.
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