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Applying empirical method for performance metrics measurement of a nuclear security system

Authors :
Maizura Ibrahim
Siti Nurbahyah Hamdan
Saa’idi Ismail
Mohamad Safuan Sulaiman
Sufian Norazam Mohamed Aris
Mohd Hasnor Bin Hasan
Mohd Dzul Aiman Aslan
Nur Fatini Abdul Ghani
Amy Hamijah Ab Hamid
Source :
IOP Conference Series: Materials Science and Engineering. 1231:012019
Publication Year :
2022
Publisher :
IOP Publishing, 2022.

Abstract

A nuclear security system is often developed based on a particular framework. In our case, a nuclear security system is developed based on the big data analytics framework with the purpose of integrating all nuclear security systems within a nuclear facility. Nuclear security can be defined as the prevention and detection of, and response to, theft, sabotage, unauthorized access, illegal transfer, or other malicious acts involving nuclear material, other radioactive substances, or their associated facilities. Whereas, big data analytics is denoted as a new way of collecting, analyzing large amounts of data, finding the appropriate patterns to support decision making, hence improving the action taken in solving the problems. The system-based evaluations methodology is widely used to measure the performance metrics of nuclear security systems. However, the system-based evaluation methodology consumes time and demands a lot of effort because in applying the methodology, a complete nuclear security system that is based on the particular framework needs to be designed, developed, and implemented in the nuclear facilities environment before the performance metrics could be measured. In this paper, we present an empirical method of measuring the performance metrics by utilizing the Rasch Measurement Model. The methodology is formulated to reduce the time and efforts in measuring the performance metrics of a nuclear system that is developed based on a framework…

Details

ISSN :
1757899X and 17578981
Volume :
1231
Database :
OpenAIRE
Journal :
IOP Conference Series: Materials Science and Engineering
Accession number :
edsair.doi...........638d4469da8d36fc8134719eec66132e
Full Text :
https://doi.org/10.1088/1757-899x/1231/1/012019