DocumentCode
1808840
Title
An improved algorithm for the measurement of flame flicker frequency
Author
Xu, Lijun ; Yan, Yong
Author_Institution
Centre for Adv. Instrum. & Control, Univ. of Greenwich, Chatham, UK
Volume
3
fYear
2004
fDate
18-20 May 2004
Firstpage
2278
Abstract
The flicker frequency of a combustion flame measured from the spectrum of a flame signal often depends on the level of white noise in the signal as well as the signal sampling rate. In order to solve this problem, a new computing algorithm has been developed by making two improvements to the original direct calculation method. One of the improvements is the wavelet-based pre-filtering of the original flame signal. The other is an adaptive truncation of the spectrum of the filtered signal. It is found that the white noise can be largely cancelled by wavelet filtering. To decrease the smearing effect of the remaining noise a spectrum truncation scheme is utilised. The effectiveness of the improved algorithm is evaluated by conducting a series of experimental tests on an industrial scale combustion test facility. Results obtained are reported and discussed.
Keywords
adaptive filters; boilers; combustion; computerised monitoring; flames; frequency measurement; furnaces; signal denoising; signal sampling; spectral analysis; turbulence; wavelet transforms; white noise; adaptive truncation; combustion efficiency; combustion flame; computing algorithm; flame flicker frequency measurement; industrial combustor; industrial furnace; industrial scale combustion test facility; noise smearing effect; power spectrum; signal denoising; signal sampling rate; spectrum truncation scheme; turbulent flame; wavelet-based prefiltering; white noise; Adaptive filters; Combustion; Filtering; Fires; Frequency measurement; Noise cancellation; Noise measurement; Signal sampling; Testing; White noise;
fLanguage
English
Publisher
ieee
Conference_Titel
Instrumentation and Measurement Technology Conference, 2004. IMTC 04. Proceedings of the 21st IEEE
ISSN
1091-5281
Print_ISBN
0-7803-8248-X
Type
conf
DOI
10.1109/IMTC.2004.1351547
Filename
1351547
Link To Document