Title :
What Should Secondary Users Do Upon Incumbents´ Return?
Author :
Caoxie Zhang ; Shin, Kang G.
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of Michigan, Ann Arbor, MI, USA
Abstract :
In a cognitive radio network (CRN), secondary users (SUs) opportunistically utilize idle licensed spectrum bands. We address the natural questions that arise when the incumbents or primary users (PUs) return to the channel the SUs are using opportunistically. Instead of immediately switching to another idle channel as proposed in almost all existing approaches, the SUs may opt to wait silently in their current channel until the PUs depart. This option would be beneficial to the SUs if the returned PUs stay at the channel only for a short period of time and the SUs´ channel-switching incurs a non-negligible overhead. We determine how long the SUs should wait in their current channel before switching to a new idle channel. The SUs should also occasionally sense those (called em out-of-band) channels currently not in use for sensing the availability of spectrum opportunities. We propose an efficient, adaptive spectrum-sensing technique to detect when a busy out-of-band channel becomes idle. We also present a spectrum-management architecture that integrates the SUs´ strategies and facilitates fast discovery of spectrum opportunities.
Keywords :
cognitive radio; radio spectrum management; telecommunication channels; telecommunication switching; adaptive spectrum-sensing technique; channel-switching; cognitive radio network; idle licensed spectrum bands; out-of-band channel; primary users; secondary users; spectrum-management architecture; Approximation methods; Databases; Dynamic programming; Hazards; Markov processes; Sensors; Switches; Cognitive radio; Markov decision process; adaptive sensing; channel switching;
Journal_Title :
Selected Areas in Communications, IEEE Journal on
DOI :
10.1109/JSAC.2013.130308