A decentralized eigenvalue computation method for spectrum sensing based on average consensus

J Mohammadi, S Limmer, S Stańczak - Frequenz, 2016 - degruyter.com
Frequenz, 2016degruyter.com
This paper considers eigenvalue estimation for the decentralized inference problem for
spectrum sensing. We propose a decentralized eigenvalue computation algorithm based on
the power method, which is referred to as generalized power method GPM; it is capable of
estimating the eigenvalues of a given covariance matrix under certain conditions.
Furthermore, we have developed a decentralized implementation of GPM by splitting the
iterative operations into local and global computation tasks. The global tasks require data …
Abstract
This paper considers eigenvalue estimation for the decentralized inference problem for spectrum sensing. We propose a decentralized eigenvalue computation algorithm based on the power method, which is referred to as generalized power method GPM; it is capable of estimating the eigenvalues of a given covariance matrix under certain conditions. Furthermore, we have developed a decentralized implementation of GPM by splitting the iterative operations into local and global computation tasks. The global tasks require data exchange to be performed among the nodes. For this task, we apply an average consensus algorithm to efficiently perform the global computations. As a special case, we consider a structured graph that is a tree with clusters of nodes at its leaves. For an accelerated distributed implementation, we propose to use computation over multiple access channel (CoMAC) as a building block of the algorithm. Numerical simulations are provided to illustrate the performance of the two algorithms.
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