DocumentCode
1805374
Title
Rule-based noise cancellation: a fuzzy line enhancer
Author
Zhou, Tao ; Miller, Gerald ; Woo, Peng-Yung
Author_Institution
Dept. of Electr. Eng., Northern Illinois Univ., DeKalb, IL, USA
Volume
6
fYear
1999
fDate
36342
Firstpage
4309
Abstract
The extraction of a desired signal from extraneous noise is a typical research topic in the field of signal processing. The filter used to realize this task to enhance a narrow-band signal in the presence of broadband noise is called a line enhancer. In this paper, line enhancement (noise cancellation) by using fuzzy theory is introduced. By using a fuzzy logic approach, the locations of the lower bound and the upper bound of the main power band, in the spectrum of an arbitrary narrow-band signal that is corrupted by a broad-band noise, can be detected. The membership functions are described mathematically by sets of line equations based on analytic geometry rather than by conventional graphics and fuzzy inference is therefore mathematically implemented in software. A proper band-pass linear FIR filter is then automatically generated, based on the detected information to filter and finally enhance the signal of interest. The computer simulation, which is analyzed in this paper, demonstrates satisfactory results. The implementation considerations of the proposed fuzzy line enhancer are compared with those of the existing adaptive line enhancers; it is satisfactory, and the algorithm is simpler
Keywords
FIR filters; band-pass filters; filtering theory; fuzzy logic; inference mechanisms; interference suppression; knowledge based systems; neural nets; signal processing; analytic geometry; band-pass linear FIR filter; broadband noise; fuzzy inference; fuzzy line enhancer; fuzzy logic approach; fuzzy theory; line enhancement; line equations; lower bound; membership functions; narrow-band signal; rule-based noise cancellation; signal processing; upper bound; Computer graphics; Equations; Finite impulse response filter; Fuzzy logic; Geometry; Line enhancers; Narrowband; Noise cancellation; Signal processing; Upper bound;
fLanguage
English
Publisher
ieee
Conference_Titel
Neural Networks, 1999. IJCNN '99. International Joint Conference on
Conference_Location
Washington, DC
ISSN
1098-7576
Print_ISBN
0-7803-5529-6
Type
conf
DOI
10.1109/IJCNN.1999.830860
Filename
830860
Link To Document