Stankovic, Koviljka D. J.

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  • Stankovic, Koviljka D. J. (1)
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Msv Signal Processing System for Neutron-Gamma Discrimination in a Mixed Field

Stanković, Srboljub; Iricanin, Bratislav D.; Nikolić, Dragana; Janković, Ksenija S.; Radenković, Mirjana; Stankovic, Koviljka D. J.; Osmokrović, Predrag V.

(2012)

TY  - JOUR
AU  - Stanković, Srboljub
AU  - Iricanin, Bratislav D.
AU  - Nikolić, Dragana
AU  - Janković, Ksenija S.
AU  - Radenković, Mirjana
AU  - Stankovic, Koviljka D. J.
AU  - Osmokrović, Predrag V.
PY  - 2012
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/4928
AB  - Based on the principles derived from Campbells theorem, this paper carries out an analysis of the possibilities of Campbells mean square value signal processing system. The mean square value mode is especially suitable for measurements performed in a mixed radiation field, because the quantities of electrical charge involved in the interactions of the two types of radiation are substantially different. The measuring detector element may be an adequate ionization chamber and/or semiconductor components for mixed n-gamma fields. An examination of the discrimination of gamma in relation to the neutron component in the signal of the detector output was carried out, calculated according to the theoretical model of radiation interaction with the detector. The advantage of the mean square value method was confirmed and it was concluded that the order of n-gamma discrimination in mean square value signal processing is greater than the one rendered by the classical measuring method.
T2  - Nuclear technology and radiation protection
T1  - Msv Signal Processing System for Neutron-Gamma Discrimination in a Mixed Field
VL  - 27
IS  - 2
SP  - 165
EP  - 170
DO  - 10.2298/NTRP1202165S
ER  - 
@article{
author = "Stanković, Srboljub and Iricanin, Bratislav D. and Nikolić, Dragana and Janković, Ksenija S. and Radenković, Mirjana and Stankovic, Koviljka D. J. and Osmokrović, Predrag V.",
year = "2012",
abstract = "Based on the principles derived from Campbells theorem, this paper carries out an analysis of the possibilities of Campbells mean square value signal processing system. The mean square value mode is especially suitable for measurements performed in a mixed radiation field, because the quantities of electrical charge involved in the interactions of the two types of radiation are substantially different. The measuring detector element may be an adequate ionization chamber and/or semiconductor components for mixed n-gamma fields. An examination of the discrimination of gamma in relation to the neutron component in the signal of the detector output was carried out, calculated according to the theoretical model of radiation interaction with the detector. The advantage of the mean square value method was confirmed and it was concluded that the order of n-gamma discrimination in mean square value signal processing is greater than the one rendered by the classical measuring method.",
journal = "Nuclear technology and radiation protection",
title = "Msv Signal Processing System for Neutron-Gamma Discrimination in a Mixed Field",
volume = "27",
number = "2",
pages = "165-170",
doi = "10.2298/NTRP1202165S"
}
Stanković, S., Iricanin, B. D., Nikolić, D., Janković, K. S., Radenković, M., Stankovic, K. D. J.,& Osmokrović, P. V.. (2012). Msv Signal Processing System for Neutron-Gamma Discrimination in a Mixed Field. in Nuclear technology and radiation protection, 27(2), 165-170.
https://doi.org/10.2298/NTRP1202165S
Stanković S, Iricanin BD, Nikolić D, Janković KS, Radenković M, Stankovic KDJ, Osmokrović PV. Msv Signal Processing System for Neutron-Gamma Discrimination in a Mixed Field. in Nuclear technology and radiation protection. 2012;27(2):165-170.
doi:10.2298/NTRP1202165S .
Stanković, Srboljub, Iricanin, Bratislav D., Nikolić, Dragana, Janković, Ksenija S., Radenković, Mirjana, Stankovic, Koviljka D. J., Osmokrović, Predrag V., "Msv Signal Processing System for Neutron-Gamma Discrimination in a Mixed Field" in Nuclear technology and radiation protection, 27, no. 2 (2012):165-170,
https://doi.org/10.2298/NTRP1202165S . .
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