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Difference between revisions of "B.labs"


(Low-Autocorrelation Binary Sequences Problem)
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== Publication ==
 
== Publication ==
  
B. Bošković, F. Brglez and J. Brest, Low-Autocorrelation Binary Sequences: On Improved Merit Factors and Runtime Predictions to Achieve Them, http://arxiv.org/abs/1406.5301, under review
+
B. Bošković, F. Brglez and J. Brest, *Low-Autocorrelation Binary Sequences: On Improved Merit Factors and Runtime Predictions to Achieve Them*, http://arxiv.org/abs/1406.5301, under review.
  
 
== Software and solutions ==
 
== Software and solutions ==
Comprehensive tables of best-known-value solutions, the number of unique solutions in canonic form and the solutions themselves, the source code of relevant solvers, customized for the labs problem are available on [https://github.com/borkob/git_labs GitHub]
+
Comprehensive tables of best-known-value solutions, the number of unique solutions in canonic form and the solutions themselves, the source code of relevant solvers, customized for the labs problem are available on [https://github.com/borkob/git_labs GitHub].
  
 
== Crowd-sourcing ==
 
== Crowd-sourcing ==

Revision as of 07:23, 10 November 2016

Low-Autocorrelation Binary Sequences Problem

Publication

B. Bošković, F. Brglez and J. Brest, *Low-Autocorrelation Binary Sequences: On Improved Merit Factors and Runtime Predictions to Achieve Them*, http://arxiv.org/abs/1406.5301, under review.

Software and solutions

Comprehensive tables of best-known-value solutions, the number of unique solutions in canonic form and the solutions themselves, the source code of relevant solvers, customized for the labs problem are available on GitHub.

Crowd-sourcing

A crowd-sourcing server prototype to facilitate experimentation and push the frontiers on finding new best-known values for the labs problem is under construction.