Title :
A performance trade-off in wideband cognitive radio for flexible wireless systems
Author :
Jeong-Hun Park ; Chan-Byoung Chae ; Dongku Kim
Author_Institution :
Sch. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
Abstract :
As network geometry becomes complicated, it is difficult to allocate the frequency to user predeterminately. For this reason, open spectrum access paradigm gets an attention again. In a Flexible Wireless AP (FWAP), proposed by NTT [1], a unified wireless platform provides wideband frequency, e.g., from 0 Hz to 50 GHz, and it can receive various types of wireless signals. In this system, each mobile device should find a vacant frequency band, which requires to sample a wideband signal. In a mobile device, however, it is a huge burden to sample the wideband signal even though the sub-Nyquist sampler [2] is implemented. In this paper, we develop a new wideband cognitive radio technique that can provide available frequency candidates for a prospective user. This technique is based on a trade off between a minor performance and a major performance. By trading off a False Alarm (FA) performance, we can reduce a sampling rate for obtaining an appropriate False Negative (FN) performance.
Keywords :
cognitive radio; mobile handsets; NTT; false alarm performance; false negative performance; flexible wireless AP; flexible wireless systems; frequency band; mobile device; network geometry; open spectrum access paradigm; performance trade-off; subNyquist sampler; wideband cognitive radio; wideband cognitive radio technique; wideband frequency; wideband signal; Cognitive radio; Interference; Mobile handsets; Sensors; Wideband; Wireless sensor networks; Compressed sensing; cognitive radio; spectrum sharing; specturm sensing; sub-Nyquist sampling;
Conference_Titel :
Communications Workshops (ICC), 2013 IEEE International Conference on
Conference_Location :
Budapest
DOI :
10.1109/ICCW.2013.6649255