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Journal articles on the topic 'Military networks'

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1

Winkler, Michael, Klaus-Dieter Tuchs, Kester Hughes, and Graeme Barclay. "Theoretical and practical aspects of military wireless sensor networks." Journal of Telecommunications and Information Technology, no. 2 (June 25, 2023): 37–45. http://dx.doi.org/10.26636/jtit.2008.2.870.

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Wireless sensor networks can be used by the military for a number of purposes such as monitoring militant activity in remote areas and force protection. Being equipped with appropriate sensors these networks can enable detection of enemy movement, identification of enemy force and analysis of their movement and progress. The focus of this article is on the military requirements for flexible wireless sensor networks. Based on the main networking characteristics and military use-cases, insight into specific military requirements is given in order to facilitate the reader’s understanding of the o
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Johnsen, Frank T., and Kevin S. Chan. "Military Communications and Networks." IEEE Communications Magazine 57, no. 8 (2019): 40. http://dx.doi.org/10.1109/mcom.2019.8808159.

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Chan, Kevin, and Frank T. Johnsen. "Military Communications and Networks." IEEE Communications Magazine 58, no. 2 (2020): 60. http://dx.doi.org/10.1109/mcom.2020.8999429.

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Chan, Kevin S., and Frank T. Johnsen. "Military Communications and Networks." IEEE Communications Magazine 58, no. 8 (2020): 13. http://dx.doi.org/10.1109/mcom.2020.9183742.

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Chong, Peter Han Joo, and Nils Agne Nordbotten. "Military Communications and Networks." IEEE Communications Magazine 61, no. 5 (2023): 158. http://dx.doi.org/10.1109/mcom.2023.10129047.

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6

Hancock, Bill. "Using network hacking techniques to disrupt military operational networks." Network Security 1998, no. 8 (1998): 13–17. http://dx.doi.org/10.1016/s1353-4858(98)80075-5.

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7

PRABHU, Dr S. R. BOSELIN, N. BALAKUMAR, and A. JOHNSON ANTONY. "Evolving Constraints in Military Applications Using Wireless Sensor Networks." International Journal of Innovative Research in Computer Science & Technology 5, no. 1 (2017): 184–87. http://dx.doi.org/10.21276/ijircst.2017.5.1.2.

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8

Kulkumatagi, Savita S. "Secure Data Retrieval for Decentralized Disruption-Tolerent Military Networks." Bonfring International Journal of Software Engineering and Soft Computing 6, Special Issue (2016): 223–29. http://dx.doi.org/10.9756/bijsesc.8283.

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9

TANRIVERDIYEV, Elshan Elyar. "ANALYSIS OF COMPUTER NETWORK STATISTICS FOR IDENTIFYING STABILITY-DISRUPTING INFORMATION FLOWS IN MILITARY LOCAL NETWORKS." National Security Studies 34, no. 4 (2024): 77–89. http://dx.doi.org/10.37055/sbn/193462.

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The increasing complexity and scope of military computer networks necessitate robust methods to ensure network stability and security. This study presents a comprehensive analysis of computer network statistics in military local networks to develop a method for detecting information flows that disrupt stability. By leveraging advanced statistical techniques and machine learning algorithms, this research aims to enhance the cybersecurity posture of military local networks globally. Military networks are vital for communication, data exchange, and operational coordination. However, the dynamic n
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10

Chan, Kevin, Peter H. J. Chong, and Frank T. Johnsen. "Series Editorial: Military Communications and Networks." IEEE Communications Magazine 59, no. 2 (2021): 35. http://dx.doi.org/10.1109/mcom.2021.9374602.

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Chan, Kevin, Peter Han Joo Chong, and Nils Agne Nordbotten. "Series Editorial: Military Communications and Networks." IEEE Communications Magazine 60, no. 5 (2022): 58. http://dx.doi.org/10.1109/mcom.2022.9777267.

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Chan, Kevin, Peter H. J. Chong, and Frank T. Johnsen. "Series Editorial: Military Communications and Networks." IEEE Communications Magazine 59, no. 8 (2021): 64. http://dx.doi.org/10.1109/mcom.2021.9530494.

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13

Chong, Peter Han Joo, Nils Agne Nordbotten, and Robert Ulman. "Series Editorial: Military Communications and Networks." IEEE Communications Magazine 62, no. 10 (2024): 94. http://dx.doi.org/10.1109/mcom.2024.10713077.

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14

Antonucci, Alessandro, Ralph Brühlmann, Alberto Piatti, and Marco Zaffalon. "Credal networks for military identification problems." International Journal of Approximate Reasoning 50, no. 4 (2009): 666–79. http://dx.doi.org/10.1016/j.ijar.2009.01.005.

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15

Chong, Peter Han Joo, and Nils Agne Nordbotten. "Series Editorial: Military Communications and Networks." IEEE Communications Magazine 62, no. 1 (2024): 54. http://dx.doi.org/10.1109/mcom.2024.10401868.

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16

Al-Bayatti, Ali H., Hussein Zedan, Antoniuo Cau, and François Siewe. "Security Management for Mobile Ad Hoc Network of Networks (MANoN)." International Journal of Mobile Computing and Multimedia Communications 2, no. 1 (2010): 1–19. http://dx.doi.org/10.4018/jmcmc.2010103001.

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Many military research efforts have concentrated on how to allow war-fighters to take advantage of all available information within the battlefield in a rapid and flexible manner. As a result, the development of the Global Information Grid (GIG) was the key enabler for this process; hence, adding to the development of the mobile networking part of the GIG, the concept of the Mobile Ad hoc Network of Networks (MANoN) is introduced. This article proposes a novel security management algorithm achieving the three management essentials: Security Administration; Prevention and Detection; and Contain
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17

Kaneberg, Elvira, Susanne Hertz, and Leif-Magnus Jensen. "Voluntary defense networks in emergency preparedness in developed countries: the case of Sweden." Revista Científica General José María Córdova 17, no. 26 (2019): 229–50. http://dx.doi.org/10.21830/19006586.379.

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Voluntary networks are actors in civil society and central to the emergency preparedness efficiency of developed countries’. This study focuses on the voluntary defense networks in Sweden, a unique set of networks that contribute to the efficiency of emergency preparedness. Through interviews with experts in Swedish civil and military fields and their associated voluntary defense networks, as well as secondary data, we examined the coordination of these voluntary defense networks in practice. Although voluntary network coordination is highly associated with efficiency, in practice, most volunt
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18

Constantinescu, Maria. "Building Resilience Against Cybersecurity Risks in Military Transportation Networks." International conference KNOWLEDGE-BASED ORGANIZATION 31, no. 1 (2025): 71–78. https://doi.org/10.2478/kbo-2025-0008.

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Abstract The resilience of military transportation networks is critical to ensuring the effective deployment and sustainment of military forces, considering that the increasing reliance on digital technologies has made these networks highly vulnerable to cyber threats. This paper explores the evolving cybersecurity threat landscape affecting military mobility, identifying key attack vectors across sea, air, rail, road, and inland waterways. It examines how legacy systems, interoperability issues, and resource constraints hinder effective cyber defence. Through a comprehensive analysis of past
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19

S.Dule, Karishma, and M. B. Nagori. "Secure Data Retrieval for Decentralized Military Networks." International Journal of Computer Applications 116, no. 8 (2015): 18–21. http://dx.doi.org/10.5120/20356-2548.

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20

Bailey, Michael, William Kemple, Michael West, and Charles Chase. "Object-Oriented Modelling of Military Communications Networks." Journal of the Operational Research Society 45, no. 10 (1994): 1108. http://dx.doi.org/10.2307/2584474.

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21

Mitchell, Paul T. "Freedom and Control: Networks in Military Environments." Adelphi Papers 46, no. 385 (2006): 27–44. http://dx.doi.org/10.1080/05679320601176150.

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22

Viswanathan, M. S. "Tactical Military Communication Networks of the Future ." Defence Science Journal 43, no. 1 (1993): 71–78. http://dx.doi.org/10.14429/dsj.43.4218.

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23

Lund, Ketil, Espen Skjervold, Frank Johnsen, Trude Hafsøe, and Anders Eggen. "Robust web services in heterogeneous military networks." IEEE Communications Magazine 48, no. 10 (2010): 78–83. http://dx.doi.org/10.1109/mcom.2010.5594680.

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24

Johnsen, Frank, Trude Hafsoe, Anders Eggen, Carsten Griwodz, and Pal Halvorsen. "Web services discovery across heterogeneous military networks." IEEE Communications Magazine 48, no. 10 (2010): 84–90. http://dx.doi.org/10.1109/mcom.2010.5594681.

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25

Van Rompaey, Léonard. "Shifting from Autonomous Weapons to Military Networks." Journal of International Humanitarian Legal Studies 10, no. 1 (2019): 111–28. http://dx.doi.org/10.1163/18781527-01001011.

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The persistent anthropomorphism of lethal autonomous weapons systems (laws) as the replacement for human soldiers creates irrelevant expectations of physical embodiment and cognitive individualization. This anthropomorphism taints the analysis and discussions on the adaptation of international humanitarian law (ihl) by excluding relevant technologies from the scope of discussions. Shifting from laws to a network-centric sociotechnical systems perspective allows to remedy the under inclusiveness of the laws perspective by shifting away from the salient features of laws, in favour of a focus on
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26

Bailey, Michael, William Kemple, Michael West, and Charles Chase. "Object-Oriented Modelling of Military Communications Networks." Journal of the Operational Research Society 45, no. 10 (1994): 1108–22. http://dx.doi.org/10.1057/jors.1994.181.

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27

Pólkowski, Marcin, and Dariusz Laskowski. "Reliability of IP Tunnels in Military Networks." Journal of KONBiN 39, no. 1 (2016): 21–40. http://dx.doi.org/10.1515/jok-2016-0030.

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Abstract The military networks, contrary to commercial ones, require standards which provide the highest level of security and reliability. The process to assuring redundancy of the main connections through applying various protocols and transmission media causes problem with time needed to re-establish virtual tunnels between different locations in case of damaged link. This article compares reliability of different IP (Internet Protocol) tunnels, which were implemented on military network devices.
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28

Ginzler, Tobias, and Marek Amanowicz. "Adaptation of the Kademila Routing for Tactical Networks." Journal of Telecommunications and Information Technology, no. 1 (June 27, 2023): 69–77. http://dx.doi.org/10.26636/jtit.2011.1.1136.

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n this paper a modification of the widely used Kademlia peer-to-peer system to tactical networks is proposed. We first take a look at the Iavailable systems today to cover the range of possibilities peer-to-peer systems offer. We identify candidates for use in military networks. Then we compare two candidate systems in an environment with highly dynamic participants. The considered environment is focused on the special conditions in tactical networks. Then we give rationale for choosing Kademlia as a suitable system for tactical environments. Since Kademlia is not adapted to military networks,
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29

Bove, Vincenzo, Leandro Elia, and Marco Pelliccia. "Centrality in Trade Networks and Investment in Security." Peace Economics, Peace Science and Public Policy 22, no. 1 (2016): 27–39. http://dx.doi.org/10.1515/peps-2015-0042.

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AbstractThe contemporary empirical literature on military spending has focused on institutional and conflict factors, and although has acknowledged the role of trade openness, it has not taken into account the position of a state in the trade network. Building on the concept of network centrality, we claim that the structure of trade networks affects the optimal investment in security, and that a country’s level of military spending is a function of its strategic position in the global network of a critical commodity, such as oil. Our empirical results show that network centrality constrains m
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30

Hundman, Eric, and Sarah E. Parkinson. "Rogues, degenerates, and heroes: Disobedience as politics in military organizations." European Journal of International Relations 25, no. 3 (2019): 645–71. http://dx.doi.org/10.1177/1354066118823891.

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Disobedience in military organizations affects critical outcomes such as the quality of civil–military relations, the likelihood of civilian abuse, and battlefield effectiveness. Existing work on military disobedience focuses on group dynamics; this article instead investigates the circumstances under which individual officers disobey. We argue that officers interpret military orders based on their concurrent positions in multiple social networks and that, contingent on the soldier’s environment, such orders can “activate” tensions between overlapping social network identifications. These tens
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31

Jeong, Ho-Taek, and Jae-Hwa Lee. "A Study of the Network Effect on Exports in the Defense Industry." Korea Association for International Commerce and Information 25, no. 1 (2023): 109–28. http://dx.doi.org/10.15798/kaici.2023.25.1.109.

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The main purpose of this study is to contribute to the investigation of explanatory variables and networks effect on exports in the defense industry. In particular, it attempts to examine the role of two channels of economic and non-economic networks in the gravity equation of exports; economic networks are trade, FDI and FTA, non-economic networks are military expenditure and military alliance. The basic and the augmented gravity models are estimated with an annual cross-section data set of year 2020 for 44 countries.
 The estimation results demonstrate that military expenditures explain
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32

Vytrykush, V. O., and N. V. Huzynets. "RECOGNIZING MILITARY EQUIPMENT FROM SATELLITE IMAGES USING AI." Computer systems and network 7, no. 1 (2025): 47–59. https://doi.org/10.23939/csn2025.01.047.

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Neural networks training systems used for military equipment recognition on the images are considered in the article. The implementation, considered in the article, uses pretrained part of the model with freezing most of the trained parameters and fined tuning of some part of the model with using extra data set including artificially obtained images. Two widely used recognition networks was considered: ResNet50 and Xception. After these two networks analysis, we can say that the best approach for training the network is using data expansion strategy. This means that during training we can expa
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33

Cobbett, Elizabeth, and Ra Mason. "Djiboutian sovereignty: worlding global security networks." International Affairs 97, no. 6 (2021): 1767–84. http://dx.doi.org/10.1093/ia/iiab181.

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Abstract The research problem this article addresses is whether the unique confluence of overseas security forces in a single territorial space through the leasing of land for foreign military bases compromises the state's sovereignty. We study Djibouti's practice of renting land to military powers from an analytical position that is diametrically opposed to the literature on the ‘scramble’ for Africa and often erroneous assumptions of an erosion of sovereignty. Using the concept of ‘worlding’, we argue in this article that instead of reading ‘military base diplomacy’ as eroding and underminin
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34

Lee, Seongjin, Eunsoo Kim, Kihun Kim, Jongman Lee, and Wan Choi. "Standardization Trends and Military Communication Applications of Core Technologies of 5G NR." Journal of the Korea Institute of Military Science and Technology 27, no. 5 (2024): 611–18. http://dx.doi.org/10.9766/kimst.2024.27.5.611.

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5G New Radio(NR) technology, with its focus on high speed, low latency, and connectivity, introduces crucial advancements like MIMO for enhanced reliability and transmission rates, edge computing for reduced latency, and IAB for extended coverage. However, military communication networks face challenges such as limited capacity, unpredictable mobility and communication dead zones. This paper delves into the trends of the above 5G NR technologies outlined by the 3GPP standard, exploring their potential applications within military infrastructure networks. Our aim is to underscore the benefits o
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35

Quilez-Robres, Alberto, Marian Acero-Ferrero, Diego Delgado-Bujedo, Raquel Lozano-Blasco, and Montserrat Aiger-Valles. "Social Networks in Military Powers: Network and Sentiment Analysis during the COVID-19 Pandemic." Computation 11, no. 6 (2023): 117. http://dx.doi.org/10.3390/computation11060117.

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The outbreak of the COVID-19 pandemic shifted socialization and information seeking to social media platforms. The armed forces of the major military powers initiated civil support operations to combat the invisible and common enemy. The aim of this study is to analyze the existence of differential behavior in the corporate profiles of the major military powers on Twitter, Instagram, and Facebook during the COVID-19 pandemic. The principles of social network analysis were followed, along with sentiment analysis, to study web positioning and the emotional content of the posts (N = 25,328). The
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36

Verweijen, Judith. "Soldiers Without an Army? Patronage Networks and Cohesion in the Armed Forces of the DR Congo." Armed Forces & Society 44, no. 4 (2018): 626–46. http://dx.doi.org/10.1177/0095327x17740096.

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This article analyzes the effects of patronage networks on cohesion in the Armed Forces of the Democratic Republic of the Congo. It shows that while patronage networks provide support to individual military personnel, they undermine both peer and commander–subordinate bonding. They promote unequal service conditions and statuses and link these to extra-unit and extra-military forms of social identification, which are further reinforced by soldiers’ living and generating revenue among civilians. Furthermore, they impair meritocracy and frustrate the extent to which commanders live up to their s
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37

Stevanoski, Goce, Ivica Kocev, Jugoslav Achkoski, Saso Koceski, and Boban Temelkovski. "Implementation of a System for Physiological Status Monitoring by using Tactical Military Networks." Defence Science Journal 66, no. 5 (2016): 517. http://dx.doi.org/10.14429/dsj.66.9920.

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E-health sensors are continuing to become more advanced and more reliable in monitoring the human physiological status. There is a continuous scope for improvement in their implementation in different emergency situations. Military organisations can take an advantage of this technology for applying physiological status monitoring on personnel engaged in military operations. This implementation is driven by continuous enhancements of existing communication equipment that produces more data capable radio networks in military environment. Based on these technologies we are proposing system commun
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38

Xiong, Biao, Bixin Li, Rong Fan, Qingzhong Zhou, and Wu Li. "Modeling and Simulation for Effectiveness Evaluation of Dynamic Discrete Military Supply Chain Networks." Complexity 2017 (2017): 1–9. http://dx.doi.org/10.1155/2017/6052037.

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The effectiveness of military supply chain networks is an important reference for logistics decision-making, and it is crucial to evaluate it scientifically and accurately. This paper highlights the problem from the perspective of dynamic and discrete networks. A topological structure model with the characteristics of dynamic and discreteness is used to describe the structure of military supply chain networks (MSCNs). In order to provide a platform for evaluating the effectiveness, simulation algorithms based on topological structure models for MSCNs are presented. Considering military and eco
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39

Rushika, Umesh Dhobale, and Tulshiram Gavali Shweta. "Blockchain for Secure Defense Communication Networks." Recent Trends in Control and Converter 8, no. 2 (2025): 6–21. https://doi.org/10.5281/zenodo.15348865.

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<em>In modern defense communication networks, ensuring security, integrity, and resilience against cyber threats is of paramount importance. Traditional centralized network architectures are prone to cyberattacks, data breaches, and unauthorized access, posing significant risks to national security. Blockchain technology, with its decentralized, immutable, and cryptographically secure nature, presents a revolutionary solution for safeguarding military communication infrastructures. By leveraging distributed ledger mechanisms, blockchain enhances data integrity, prevents unauthorized modificati
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40

Jackson, Matthew O., and Stephen Nei. "Networks of military alliances, wars, and international trade." Proceedings of the National Academy of Sciences 112, no. 50 (2015): 15277–84. http://dx.doi.org/10.1073/pnas.1520970112.

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We investigate the role of networks of alliances in preventing (multilateral) interstate wars. We first show that, in the absence of international trade, no network of alliances is peaceful and stable. We then show that international trade induces peaceful and stable networks: Trade increases the density of alliances so that countries are less vulnerable to attack and also reduces countries’ incentives to attack an ally. We present historical data on wars and trade showing that the dramatic drop in interstate wars since 1950 is paralleled by a densification and stabilization of trading relatio
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41

Harres, D. N. "Military aircraft fiber optics networks: status & direction." IEEE Aerospace and Electronic Systems Magazine 19, no. 6 (2004): 16–22. http://dx.doi.org/10.1109/maes.2004.1308824.

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42

Jodalen, V., A. Eggen, B. Solberg, and O. Gronnerud. "Military messaging in IP networks using HF links." IEEE Communications Magazine 42, no. 11 (2004): 98–104. http://dx.doi.org/10.1109/mcom.2004.1362552.

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43

Sârbu, Annamaria, Dorin Alexandrescu, and Cornelia Galben. "Prospects of Troposcatter Systems in Military Communication Networks." International conference KNOWLEDGE-BASED ORGANIZATION 31, no. 3 (2025): 142–48. https://doi.org/10.2478/kbo-2025-0090.

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Abstract In modern military operations, ensuring resilient and secure communications in contested or infrastructure-deficient environments remains a strategic priority. Tropospheric scatter systems (troposcatter) are regaining attention due to their ability to provide beyond-line-of-sight (BLOS) connectivity without relying on satellites or terrestrial infrastructure. This paper explores the role of troposcatter systems in military communication networks, presents the current capabilities of troposcatter systems and provides insights into advancements of this technology such as adaptive beamfo
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44

Bhardwaj, Nitesh, and K. Tony Joseph. "Real-Time Video Streaming Applications in Military 5G Networks: A Technical Review." International Journal for Research in Applied Science and Engineering Technology 12, no. 5 (2024): 3100–3103. http://dx.doi.org/10.22214/ijraset.2024.62313.

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Abstract: The integration of advanced telecommunications technologies into military operations marks a pivotal evolution in modern warfare strategies. With the advent of military-grade 5G networks, there arises an unprecedented capacity for real-time data streaming and enhanced operational transparency on the battlefield. This literature review critically examines the deployment of real-time streaming applications within such networks, focusing on a technology stack comprising React Native, Node.js, MongoDB, Docker, and WebRTC. These technologies collectively form the backbone of a system desi
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45

Kysliuk, Kostiantyn. "Ukrainian Features of the "Female Military" on the Facebook Social Network." Issues in Cultural Studies, no. 39 (March 28, 2022): 128–40. https://doi.org/10.31866/2410-1311.39.2022.256907.

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The purpose of the article is to identify the features of the &ldquo;female military&rdquo; in the Ukrainian culture of the early 21st century on the materials of the visual content of the social network Facebook. We call the Ukrainian &ldquo;female military&rdquo; the images (primarily photographic) of women in military uniform, with military attributes, often in a real combat situation that were This is an open access journal, and all published articles are licensed under a Creative Commons Attribution 4.0. established in 2014&ndash;2021 at the level of the mass culture frame. The research m
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46

Peleshenko, Vitaly A. "ARTIFICIAL INTELLIGENCE OF UNMANNED MILITARY EQUIPMENT." SOFT MEASUREMENTS AND COMPUTING 9, no. 58 (2022): 5–18. http://dx.doi.org/10.36871/2618-9976.2022.09.001.

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The article is devoted to the development of artificial intelligence of unmanned military equipment. In particular, the prerequisites for the creation of artificial intelligence of unmanned military equipment and modern approaches to implementation at the level of physical digital counterparts using neural networks.
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47

Maseng, Torleiv, and Chris Nissen. "NETWORK-CENTRIC MILITARY COMMUNICATIONS." IEEE Communications Magazine 44, no. 11 (2006): 36. http://dx.doi.org/10.1109/com-m.2006.248155.

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48

Maseng, T., and C. A. Nissen. "Network-centric military communications." IEEE Communications Magazine 42, no. 11 (2004): 77–78. http://dx.doi.org/10.1109/mcom.2004.1362549.

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49

Hauge, Mariann, Lars Landmark, Piotr Łubkowski, Marek Amanowicz, and Krzysztof Maślanka. "Selected Issues of QoS Provision in Heterogenous Military Networks." International Journal of Electronics and Telecommunications 60, no. 1 (2014): 1–7. http://dx.doi.org/10.2478/eletel-2014-0001.

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Abstract Tactical ad-hoc networks are evolving today towards complex heterogeneous networks in terms of architecture, protocols and security. Due to the difference in network resources and reliability, end-to-end quality of service provisioning becomes very challenging. If we also take into account communication issues such as unpredictable connectivity, preferential forwarding for special traffic classes, intermittency due to node or communication link failure, the problem is further aggravated. In this article, we examine the major challenges that must be solved in order to provide efficient
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50

Singh, Upendra. "A Review on Securing Wireless Networks against Jamming Attacks." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 08, no. 05 (2024): 1–5. http://dx.doi.org/10.55041/ijsrem33883.

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The internet of thins (IoT) framework has helped in design of high speed connected networks which include Wide Area Networks (WANs). Cognitive Radio can be considered to be one of the key enablers of high speed data transfer with evolving generation of wireless networks. Cognitive networks find their applications in military and defence as well with the advent of internet of things and its allied applications in military warfare. Cognitive Radio Networks often share common resources such as bandwidth or spectrum among several users or stations. Due to continued sharing of resources, cognitive
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