TY - GEN
T1 - CR based video communication testbed with robust spectrum sensing / handoff
AU - Qi, Ji
AU - Hu, Fei
AU - Li, Xin
AU - Koushik, A. M.
AU - Hu, Lei
AU - Kumar, Sunil
N1 - Publisher Copyright:
© Springer International Publishing Switzerland 2016.
PY - 2016
Y1 - 2016
N2 - As radio spectrum is becoming congested, wireless communications require more efficient spectrum usage. Recently, the cognitive radio (CR) techniques have become attractive as they can utilize any unused spectrum. In this paper, we build a CR video communication test-bed, which implements spectrum sensing and spectrum handoff functionalities in USRP boards. We have implemented compressive spectrum sensing, intelligent spectrum handoff, multi-video-flow transmission, underTDMAscheduling and Raptor codes for reliable video transmissions. By using compressive sensing in spectrum sensing method, the spectrum detection accuracy is improved without much algorithm complexity, and it is also robust to the noise uncertainty due to the use of cyclostationary features. To realize intelligent spectrum handoff, we have designed a real-time jamming detection scheme, as well as synchronized spectrum switching method. We have also implemented a multi-point TDMA-based communication system, which enables any node to send out multiple video flows to different neighbors with pipelined and scheduled data transmissions. We also proposed a special rateless codes called prioritized Raptor codes for more reliable video transmission and implemented in the GNU Radio applications. The proposedCRvideo transmission testbed can be used for newprotocol testing purpose.
AB - As radio spectrum is becoming congested, wireless communications require more efficient spectrum usage. Recently, the cognitive radio (CR) techniques have become attractive as they can utilize any unused spectrum. In this paper, we build a CR video communication test-bed, which implements spectrum sensing and spectrum handoff functionalities in USRP boards. We have implemented compressive spectrum sensing, intelligent spectrum handoff, multi-video-flow transmission, underTDMAscheduling and Raptor codes for reliable video transmissions. By using compressive sensing in spectrum sensing method, the spectrum detection accuracy is improved without much algorithm complexity, and it is also robust to the noise uncertainty due to the use of cyclostationary features. To realize intelligent spectrum handoff, we have designed a real-time jamming detection scheme, as well as synchronized spectrum switching method. We have also implemented a multi-point TDMA-based communication system, which enables any node to send out multiple video flows to different neighbors with pipelined and scheduled data transmissions. We also proposed a special rateless codes called prioritized Raptor codes for more reliable video transmission and implemented in the GNU Radio applications. The proposedCRvideo transmission testbed can be used for newprotocol testing purpose.
KW - Cognitive radios
KW - Compressive spectrum sensing
KW - Intelligent spectrum handoff
KW - Raptor code
KW - TDMA
KW - USRP
UR - https://www.scopus.com/pages/publications/84962687868
U2 - 10.1007/978-3-319-32467-8_6
DO - 10.1007/978-3-319-32467-8_6
M3 - Conference contribution
AN - SCOPUS:84962687868
SN - 9783319324661
T3 - Advances in Intelligent Systems and Computing
SP - 59
EP - 70
BT - Information Technology
A2 - Latifi, Shahram
PB - Springer Verlag
T2 - 13th International Conference on Information Technology- New Generations, ITNG 2016
Y2 - 4 April 2016 through 6 April 2016
ER -