Title :
Channel state prediction in cognitive radio, part I: Response delays in practical hardware platforms
Author :
Chen, Zhe ; Guo, Nan ; Hu, Zhen ; Qiu, Robert C.
Author_Institution :
Dept. of Electr. & Comput. Eng., Tennessee Technol. Univ., Cookeville, TN, USA
Abstract :
Cognitive radio has been put forward to make efficient use of scarce radio frequency spectrum. Spectrum sensing is the cornerstone of cognitive radio. As a part of the effort toward building a cognitive radio network testbed, we have demonstrated real-time spectrum sensing. However, current hardware platforms for cognitive radio introduce time delays that actually undermine the accuracy of spectrum sensing. The time delay, named response delay, incurred by hardware and software can be measured at the receiving antenna and the transmitting antenna co-located at a secondary user (SU). In this paper, minimum response delays are experimentally quantified and reported based on two hardware platforms, the universal software radio peripheral 2 (USRP2) and the small form factor software defined radio development platform (SFF SDR DP). In a subsequent paper, an approach for single-user prediction is proposed to combat with the response delays. This work is a part of the effort toward building a cognitive radio network testbed.
Keywords :
cognitive radio; delays; receiving antennas; software radio; transmitting antennas; channel state prediction; cognitive radio network; receiving antenna; response delays; scarce radio frequency spectrum; single-user prediction; small form factor software defined radio development platform; spectrum sensing; time delays; transmitting antenna; universal software radio peripheral 2; Antenna measurements; Cognitive radio; Delay; Delay effects; Hardware; Radio frequency; Sensors;
Conference_Titel :
Southeastcon, 2011 Proceedings of IEEE
Conference_Location :
Nashville, TN
Print_ISBN :
978-1-61284-739-9
DOI :
10.1109/SECON.2011.5752903