Smart space framework providing dynamic embedded intelligent information

2021 ◽  
Vol 10 (2) ◽  
pp. 92-99
Author(s):  
SeoYoon Jang ◽  
JiHoon Kang
2020 ◽  
Vol 5 ◽  
pp. 94-106
Author(s):  
Y.M. Iskanderov ◽  
◽  
M.D. Pautov

Aim. The use of modern information technologies makes it possible to achieve a qualitatively new level of control in supply chains. In these conditions, ensuring information security is the most important task. The article shows the possibilities of applying the spatial concepts of the actor-network theory in the interests of forming a relevant intelligent information security management system for supply chains. Materials and methods. The article discusses a new approach based on the provisions of the actor-network theory, which makes it possible to form the structure of an intelligent information security control system for supply chains, consisting of three main functional blocks: technical, psychological and administrative. The incoming information security threats and the relevant system responses generated through the interaction of the system blocks were considered as enacting the three Law’s spaces: the space of regions, the space of networks and the space of fl uids. Results. It is shown that the stability of this system in the space of networks is a necessary condition for its successful functioning in the space of regions, and its resilience in the space of fl uids gained through the dynamic knowledge formation helps overcome the adverse effects of the fl uidity. The problems of the intentional / unintentional nature of information security threats, as well as the reactivity / proactivity of the corresponding responses of the intelligent information security management system for supply chains are investigated. Conclusions. The proposed approach showed the possibility of using such an interdisciplinary tool in the fi eld of information security as the concepts of the actor-network theory. The intelligent information security control system built on its basis ensures that almost all the features of solving information security problems in supply chains are taken into account.


Author(s):  
D. Verzilin ◽  
T. Maximova ◽  
I. Sokolova

Goal. The purpose of the study was to search for alternative sources of information on popu-lation’s preferences and response to problems and changes in the urban environment for use in the operational decision-making at situational centers. Materials and methods. The authors used data from search queries with keywords, data on communities in social networks, data from subject forums, and official statistics. Methods of statistical data analysis were applied. Results. The analysis of thematic online activity of the population was performed. The re-sults reflected the interest in the state of the environment, the possibility of distance learning and work, are presented. It was reasoned that measurements of population’s thematic online activity let identify needs and analyze the real-time response to changes in the urban envi-ronment. Such an approach to identifying the needs of the population can be used in addition to the platforms “Active Citizen” of the Smart City project. Conclusions. An analysis of data on online activity of the population for decision-making at situational centers is more operational, flexible and representative, as compared with the use of tools of those platforms. Such an analysis can be used as an alternative to sociological surveys, as it saves time and money. When making management decisions using intelligent information services, it is necessary to take into account the needs of the population, reflect-ed in its socio-economic activity in cyberspace.


2009 ◽  
Vol 20 (3) ◽  
pp. 671-681
Author(s):  
Liang MING ◽  
Gang ZHAO ◽  
Gui-Hai XIE ◽  
Chun-Lei WANG

ROBOT ◽  
2012 ◽  
Vol 34 (3) ◽  
pp. 337
Author(s):  
Zhiwei LIANG ◽  
Xin JIN ◽  
Songhao ZHU

Author(s):  
Wai-Tat Fu ◽  
Jessie Chin ◽  
Q. Vera Liao

Cognitive science is a science of intelligent systems. This chapter proposes that cognitive science can provide useful perspectives for research on technology-mediated human-information interaction (HII) when HII is cast as emergent behaviour of a coupled intelligent system. It starts with a review of a few foundational concepts related to cognitive computations and how they can be applied to understand the nature of HII. It discusses several important properties of a coupled cognitive system and their implication to designs of information systems. Finally, it covers how levels of abstraction have been useful for cognitive science, and how these levels can inform design of intelligent information systems that are more compatible with human cognitive computations.


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