scholarly journals Application of modern learning technologies on development of qualification in physical protection

2021 ◽  
Vol 22 (2) ◽  
pp. 197-205
Author(s):  
V.I. Gavrilyuk ◽  
◽  
S.S. Drapej ◽  
B.V. Kaidyk ◽  
V.I. Kirischuk ◽  
...  

Two training technologies, developed and implemented by the George Kuzmich Training Center for Physical Protection, Accounting and Control of Nuclear Material of the Institute for Nuclear Research of the National Academy of Sciences of Ukraine in the training process for advanced training in physical protection, are considered. The first is a training technology based on the use of the Training ground "Complex of engineering and technical means of a physical protection system", which enables students to acquire practical skills in operational management and technical operation of a complex engineering and technical means of a physical protection system. The second is a technology based on the use of the Interactive training complex "Nuclear Power Plant with elements of the physical protection system", which allows interactively checking the configurations of the nuclear power plant physical protection system proposed by the students for the presence of vulnerable routes to the targets of adversaries. The effectiveness of using these technologies in the training process is discussed, as well as the development and implementation of other modern training technologies by the Training Center.

Author(s):  
Sun Na ◽  
Shi Gui-lian ◽  
Xie Yi-qin ◽  
Li Gang ◽  
Jiang Guo-jin

Communication independence is one of the key criteria of digital safety I&C system design. This paper mainly analyzes the requirements for communication independence in safety regulations and standards, and then introduces the architecture and design features, including communication failure processing measures, of communication networks of ACPR1000 nuclear power plant safety digital protection system based on FirmSys platform developed by CTEC. The communication design meets the regulations requirements and effectively improves the safety and reliability of the system, and it is successfully applied in reactor protection system (RPS) of Yang Jiang nuclear power plant unit 5&6. In addition this design can provide reference for communication designs of other NPPs and industries.


Kerntechnik ◽  
2021 ◽  
Vol 86 (1) ◽  
pp. 33-38
Author(s):  
T. Zeng ◽  
X. Yang ◽  
Y. Wan ◽  
Y. Mao ◽  
Z. Liu

Abstract The optimization measures in the physical protection system monitoring center of a nuclear power plant include the prioritization of alarm signals, optimization of sound and light alarm form, improvement of the layout of video monitor screen, security training, and strengthening of organizational management. Based on the fuzzy analytic hierarchy process, the influence of these factors on the probability of alert assessment and guard’s respond time in the EASI method are quantitatively analyzed. Making full use of the measures for prioritization of alarm signals can effectively promote the improvement of human-computer interaction efficiency. The degree of influence of the four factors (guarder’s status, decision strategy, guarder’s training and organization management) on guard’s decision-making is roughly the same.


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