DocumentCode :
3307899
Title :
Adaptive multichannel sequential lattice prediction filtering method for cognitive radio spectrum sensing in subbands
Author :
Ozden, Mehmet Tahir
Author_Institution :
Piri Reis Univ., Istanbul, Turkey
fYear :
2012
fDate :
3-5 Oct. 2012
Firstpage :
961
Lastpage :
968
Abstract :
A multichannel characterization for autoregressive moving average(ARMA) spectrum estimation in subbands with applications to cognitive radio spectrum sensing is considered in this presentation. The fullband ARMA spectrum estimation can be realized in two-channels as a special form of this characterization. A complete orthogonalization of input multichannel data is accomplished using a modified form of sequential processing multichannel lattice stages. Matrix operations are avoided, only scalar operations are used, and a multichannel ARMA prediction filter with a highly modular and suitable structure for VLSI implementations is achieved. The filter is therefore considered as a good candidate for FPGA and DSP chip based spectrum sensing functions in software defined radio implementations. Lattice reflection coefficients for autoregressive and moving average parts are simultaneously computed. These coefficients are then converted to process parameters using a newly developed Levinson-Durbin type multichannel conversion algorithm, so that they can be utilized in the classification of the spectrum. Coarse and fine spectrum sensing can be accomplished using different prediction filter configurations. The computational complexity is given in terms of model order parameters. The performance of the proposed method is compared visually and statistically to that of the multitaper method.
Keywords :
adaptive filters; autoregressive moving average processes; channel bank filters; cognitive radio; digital signal processing chips; lattice filters; software radio; ARMA spectrum estimation; DSP chip based spectrum sensing functions; FPGA; Lattice reflection coefficients; Levinson-Durbin type multichannel conversion algorithm; adaptive multichannel sequential lattice prediction filtering method; autoregressive moving average; cognitive radio spectrum sensing; fine spectrum sensing; input multichannel data; matrix operations; multichannel ARMA prediction filter; multichannel characterization; multitaper method; orthogonalization; prediction filter configurations; sequential processing multichannel lattice stages; software defined radio implementations; subbands; Equations; Lattices; Optimization; Prediction algorithms; Sensors; Spectral analysis; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT), 2012 4th International Congress on
Conference_Location :
St. Petersburg
ISSN :
2157-0221
Print_ISBN :
978-1-4673-2016-0
Type :
conf
DOI :
10.1109/ICUMT.2012.6459798
Filename :
6459798
Link To Document :
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