NEURAL-NETWORK PATTERN-RECOGNITION OF THERMAL-SIGNATURE SPECTRA FOR CHEMICAL DEFENSE

被引:13
作者
CARRIERI, AH
LIM, PI
机构
[1] U.S. Army Chemical and Biological Defense Command, Edgewood Research, Development and Engineering Center, MD, 21010-5423, Aberdeen Proving Ground
关键词
THERMOLUMINESCENCE; NEURAL NETWORK; PATTERN RECOGNITION; VIBRATIONAL SPECTRA; REMOTE DETECTION;
D O I
10.1364/AO.34.002623
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We treat infrared patterns of absorption or emission by nerve and blister agent compounds (and simulants of this chemical group) as features for the training of neural networks to detect the compounds' liquid layers on the ground or their vapor plumes during evaporation by external heating. Training of a four-layer network architecture is composed of a backward-error-propagation algorithm and a gradient-descent paradigm. We conduct testing by feed-forwarding preprocessed spectra through the network in a scaled format consistent with the structure of the training-data-set representation. The best-performance weight matrix (spectral filter) evolved from final network training and testing with software simulation trials is electronically transferred to a set of eight artificial intelligence integrated circuits (ICs') in specific modular form (splitting of weight matrices). This form makes full use of all input-output IC nodes. This neural network computer serves an important real-time detection function when it is integrated into pre- and postprocessing data-handling units of a tactical prototype thermoluminescence sensor now under development at the Edgewood Research, Development, and Engineering Center.
引用
收藏
页码:2623 / 2635
页数:13
相关论文
共 15 条
[1]   APPLICATION OF HAMMING NETWORKS FOR IR SPECTRAL SEARCH [J].
BRUCHMANN, A ;
GOTZE, HJ ;
ZINN, P .
CHEMOMETRICS AND INTELLIGENT LABORATORY SYSTEMS, 1993, 18 (01) :59-69
[2]   INFRARED DETECTION OF LIQUIDS ON TERRESTRIAL SURFACES BY CO2-LASER HEATING [J].
CARRIERI, AH .
APPLIED OPTICS, 1990, 29 (33) :4907-4913
[3]  
FESSENDEN RJ, 1991, J CHEM SOC PERK T 2, P1755
[4]   CALCULATIONS OF THE STRUCTURE AND THE VIBRATIONAL INFRARED FREQUENCIES OF SOME METHYLPHOSPHONATES [J].
HAMEKA, HF ;
CARRIERI, AH ;
JENSEN, JO .
PHOSPHORUS SULFUR AND SILICON AND THE RELATED ELEMENTS, 1992, 66 (1-4) :1-11
[5]   THEORETICAL PREDICTION OF THE INFRARED AND RAMAN-SPECTRA OF O-ETHYL S-2-DIISOPROPYLAMINOETHYLMETHYLPHOSPHONOTHIOLATE [J].
HAMEKA, HF ;
JENSEN, JO .
INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY, 1994, 50 (02) :161-172
[6]   ABINITIO CALCULATIONS OF VIBRATIONAL-SPECTRA AND THEIR USE IN THE IDENTIFICATION OF UNUSUAL MOLECULES [J].
HESS, BA ;
SCHAAD, LJ ;
CARSKY, P ;
ZAHRADNIK, R .
CHEMICAL REVIEWS, 1986, 86 (04) :709-730
[7]  
JENSEN JO, 1994, COMMUNICATION
[8]   INTERPRETATION OF INFRARED-SPECTRA BY ARTIFICIAL NEURAL NETWORKS [J].
MEYER, M ;
WEIGELT, T .
ANALYTICA CHIMICA ACTA, 1992, 265 (02) :183-190
[9]  
MUNK ME, 1991, MIKROCHIM ACTA, V2, P505
[10]  
PIFFATH R, 1993, COMMUNICATION JUL