DocumentCode
2185127
Title
Blind standard identification with bandwidth shape and GI recognition using USRP platforms and SDR4all tools
Author
Wang, H. ; Jouini, W. ; Nafkha, A. ; Palicot, J. ; Cardoso, L.S. ; Debbah, M.
Author_Institution
SCEE/IETR, SUPELEC, Cesson Sévigne, France
fYear
2010
fDate
9-11 June 2010
Firstpage
1
Lastpage
5
Abstract
In this paper, focusing on identifying standards blindly, we propose a bandwidth shape sensor and a GI (guard interval) sensor using USRP (Universal Software Radio Peripheral) platforms and SDR4all tools. These sensors are fundamental parts of the so-called Blind Standard Recognition Sensor. The blind standard bandwidth sensor is based on a Radial Basis Function Neuronal Network designed in Matlab. We have presented first experience of using blind standard bandwidth sensor in a previous work. We will provide in this paper further details on the results of this sensor (simulations, preliminary implementations and validations). The GI sensor is implemented in order to improve the detection performance in the case of two identical bandwidth shapes. The SDR4all driver offers a simple yet efficient interface between the Matlab signal processing codes and the USRP transmitting and receiving platforms. These simple and easily accessible software defined radio tools were used to design and implement two sensors. The inducted simulations and experiments show that the designed system is indeed able to discriminate three standard-like spectrums (e.g., GSM-like, UMTS-like and OFDM-like) under simple yet real transmission conditions using their different bandwidth shapes and to identify a GI-OFDM-like system using cyclic autocorrelation method.
Keywords
bandwidth allocation; cognitive radio; radial basis function networks; radio receivers; software radio; GI recognition; SDR4all tools; USRP platforms; bandwidth shape; blind standard identification; blind standard recognition sensor; cyclic autocorrelation method; guard interval sensor; radial basis function neuronal network; software defined radio tools; universal software radio peripheral; Bandwidth; Cognitive radio; Driver circuits; OFDM; Receivers; Shape; Standards; Blind Standard Identification Sensor; Cognitive Radio; SDR4all; Sensorial Radio Bubble; USRP;
fLanguage
English
Publisher
ieee
Conference_Titel
Cognitive Radio Oriented Wireless Networks & Communications (CROWNCOM), 2010 Proceedings of the Fifth International Conference on
Conference_Location
Cannes
Print_ISBN
978-1-4244-5885-1
Electronic_ISBN
978-1-4244-5886-8
Type
conf
Filename
5577678
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