DocumentCode :
2399333
Title :
Subband coding methods for seismic data compression
Author :
Kiely, Aaron ; Pollara, Fabrizio
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
fYear :
1995
fDate :
28-30 Mar 1995
Firstpage :
447
Abstract :
Summary form only given. A typical seismic analysis scenario involves collection of data by an array of seismometers, transmission over a channel offering limited data rate, and storage of data for analysis. Seismic data analysis is performed for monitoring earthquakes and for planetary exploration as in the planned study of seismic events on Mars. Seismic data compression systems are required to cope with the transmission of vast amounts of data over constrained channels and must be able to accurately reproduce occasional high energy seismic events. We propose a compression algorithm that includes three stages: a decorrelation stage based on subband coding, a quantization stage that introduces a controlled amount of distortion to allow for high compression ratios, and a lossless entropy coding stage based on a simple but efficient block-adaptive arithmetic coding method. Adaptivity to the non-stationary behavior of the waveform is achieved by partitioning the data into blocks which are encoded separately. The compression ratio of the proposed scheme can be set to meet prescribed fidelity requirements, i.e. the waveform can be reproduced with sufficient fidelity for accurate interpretation and analysis. The distortions incurred by this compression scheme are currently being evaluated by several seismologists. Encoding is done with high efficiency due to the low overhead required to specify the parameters of the arithmetic encoder. Rate-distortion performance results on seismic waveforms are presented for various filter banks and numbers of levels of decomposition
Keywords :
adaptive codes; adaptive signal processing; arithmetic codes; band-pass filters; data compression; entropy codes; filtering theory; geophysical signal processing; quantisation (signal); rate distortion theory; seismology; arithmetic encoder; block-adaptive arithmetic coding; compression algorithm; constrained channels; data transmission; decomposition levels; decorrelation stage; earthquakes; filter banks; geophysical measurement technique; high compression ratios; lossless entropy coding stage; planetary exploration; quantization stage; rate-distortion performance; seismic data analysis; seismic data compression; seismology; signal processing; subband coding methods; Arithmetic; Compression algorithms; Data analysis; Data compression; Decorrelation; Earthquakes; Entropy coding; Mars; Monitoring; Quantization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Data Compression Conference, 1995. DCC '95. Proceedings
Conference_Location :
Snowbird, UT
ISSN :
1068-0314
Print_ISBN :
0-8186-7012-6
Type :
conf
DOI :
10.1109/DCC.1995.515557
Filename :
515557
Link To Document :
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