DocumentCode
3755838
Title
Hardware based projection onto the parity polytope and probability simplex
Author
Mitchell Wasson;Stark C. Draper
Author_Institution
University of Toronto
fYear
2015
Firstpage
1015
Lastpage
1020
Abstract
This paper is concerned with the adaptation to hardware of methods for Euclidean norm projections onto the parity polytope and probability simplex. We first refine recent efforts to develop efficient methods of projection onto the parity polytope. Our resulting algorithm can be configured to have either average computational complexity O (d) or worst case complexity O (d log d) on a serial processor where d is the dimension of projection space. We show how to adapt our projection routine to hardware. Our projection method uses a sub-routine that involves another Euclidean projection; onto the probability simplex. We therefore explain how to adapt to hardware a well know simplex projection algorithm. The hardware implementations of both projection algorithms achieve area scalings of O(d (log d)2) at a delay of O ((log d)2). Finally, we present numerical results in which we evaluate the fixed-point accuracy and resource scaling of these algorithms when targeting a modern FPGA.
Keywords
"Hardware","Projection algorithms","Decoding","Computational complexity","Delays","Optimization"
Publisher
ieee
Conference_Titel
Signals, Systems and Computers, 2015 49th Asilomar Conference on
Electronic_ISBN
1058-6393
Type
conf
DOI
10.1109/ACSSC.2015.7421292
Filename
7421292
Link To Document