Academic literature on the topic 'Telecommunications technologies'

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Journal articles on the topic "Telecommunications technologies"

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Grover, Varun, and Martin Goslar. "Telecommunications technologies." ACM SIGMIS Database: the DATABASE for Advances in Information Systems 24, no. 1 (January 15, 1993): 16–22. http://dx.doi.org/10.1145/154421.154423.

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Tumbay, Zhumabek, Aigul Boltayeva, Zhuldyzai Zhorabayeva, Baglan Aliyeva, and Ayim Sartimbetova. "Modern application of marketing in the telecommunications industry." E3S Web of Conferences 135 (2019): 04024. http://dx.doi.org/10.1051/e3sconf/201913504024.

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The article discusses the use of marketing tools in the telecommunications industry, analyzes the experience of their creation and implementation, as well as the role of marketing in this industry. It is simply impossible to imagine the current modern generation without telecommunication technologies. These technologies are so “ingrained” in our lives that it is simply unrealistic to imagine our existence without them. But some people do not even notice these important modern technologies, so companies are experiencing difficulties in relation to the position in the market. So let’s try in this article to understand what it is and why do we need telecommunications in the modern world? And is it worth promoting these telecommunications technologies through marketing communications? Are telecommunications currently being promoted through marketing tools?
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Joseph, Richard A. "Converging telecommunications technologies." Telecommunications Policy 17, no. 7 (September 1993): 493–503. http://dx.doi.org/10.1016/0308-5961(93)90091-g.

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Striy, Lyubov, Vasiliy Orlov, and Lolita Zakharchenko. "ECONOMIC ACTIVITY OF ENTERPRISES OF THE TELECOMMUNICATION INDUSTRY IN CONDITIONS OF IMPLEMENTATION OF THE NEWEST TECHNOLOGIES." Baltic Journal of Economic Studies 5, no. 1 (March 22, 2019): 207. http://dx.doi.org/10.30525/2256-0742/2019-5-1-207-213.

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The purpose of the article is to present the results of research on the direction of changing the content and forms of economic activity of telecommunication enterprises in the process of introducing the newest technologies. The article also proposes a micro model of one of the possible options for increasing the effectiveness of the economic activity of an enterprise by organizing its effective interaction with all participants of the telecommunication market. The study was performed on the example of communication enterprises operating in the communication space of Ukraine. Since the current markets for communication services integrated with the cyberspace of the Internet are virtually global, it can be assumed that the results are typical for other communication spaces. Methodology. Theoretical and methodological basis of the research are monographs, scientific books, scientific articles of modern scientists in the field of telecommunications, the newest information and communication technologies, economic globalization, development of the Internet. The basic documents that form the basis for analysing the performance of telecommunications enterprises are statistical data of the State Statistics Service of Ukraine. Other available Internet publications have also been used. To ensure the validity of research results, the following methods were used: survey methods for clarifying concepts; economic-statistical and method of graphic representation in the study of directions of changes in economic activity of telecommunications enterprises in Ukraine; economic modelling, in particular, the heuristic anaxiomatization approach, in the development of micro models of cooperation of the communication enterprise with other market actors in the process of economic activity, and some others. Results. The conducted researches confirmed the assumption that there is a redistribution of incomes during the introduction of the newest technologies in the economic activity of telecommunication enterprises. The share of revenues from the provision of telecommunications services is declining, the share of revenues from the provision of Internet services is increasing. To increase the effectiveness of economic activities of telecommunications enterprises, a micro model of cooperation has been developed and justified by the enterprise of communication with other market players in the process of economic activity. Practical importance. The micro model of interaction reflects the actual structure of interaction between telecommunications enterprises and all participants in the global telecommunications market. Practical implementation of the model can contribute to increasing the efficiency of the economic activity of telecommunications enterprises in the context of the introduction of new technologies. The model can also be used by other researchers to study various aspects of economic activity in the real market where telecommunication companies operate. Value/ originality. The originality of the results lies in a detailed study of real trends of changes in the content of economic activity of telecommunication enterprises in the context of introducing new technologies, and in the development of a micro model for the interaction of the telecommunications enterprise with all other market players.
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Bigelow, Linda, and Alice Calabrese. "Libraries and telecommunications technologies." College & Research Libraries News 50, no. 3 (March 1, 1989): 195–99. http://dx.doi.org/10.5860/crln.50.3.195.

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Fedorenko, Oleg. "Peculiarities of formation of potential of telecommunications enterprises." Problems of Innovation and Investment Development, no. 26 (September 29, 2021): 146–56. http://dx.doi.org/10.33813/2224-1213.26.2021.15.

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The purpose of the article – to analyze the peculiarities of forming the potential of a telecommunication enterprise and to suggest ways to increase the efficiency of its use. Research methodology. In the process of preparation of the article the methods of analytical, statistical and financial analysis were used. A scientific novelty is the proposal to use effective indicators of economic efficiency of the enterprise, such as profitability, profitability, cost, return on resources, investment, etc. to assess the effectiveness of the formation and use of the potential of the telecommunications enterprise. Conclusions. 1. The study of trends in the formation of the potential of telecommunications enterprises in Ukraine has determined that the pace of its development corresponds to the basic principles and principles of the concept of economic development and strategy of information society development adopted in Ukraine. The development of the economy of telecommunications enterprises is facilitated at the state level by developing new legislation in the information and telecommunications technologies sector in Ukraine, discussing and adopting new strategies for digital transformation aimed at using big data, blockchain, cloud technologies, robotics and the Internet of Things. 2. It is determined that the potential of a telecommunications enterprise is a unity of organizational, technical and information capabilities that contribute to the preparation and adoption of management decisions and influence its development. Features of capacity building determine the following components that ensure its functioning: software and hardware; personnel; information (databases); organizational, marketing, technical, technological, etc. 3. The system of financial indicators for definition of efficiency of functioning of the formed potential of the telecommunication enterprise is offered. 4. To ensure the formation of a strong potential of the telecommunications company in the work identified a number of key measures, including the creation of information systems, ensuring its operation by special staff, information security, creating new digital products and services, e-commerce and digital marketing. business analytics and big data management, etc. Key words: telecommunication enterprises, capacity building, potential structure of telecommunication enterprise, evaluation indicators, state support.
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Fidler, David P. "Final Acts of the World Conference on International Telecommunications." International Legal Materials 52, no. 3 (June 2013): 843–60. http://dx.doi.org/10.5305/intelegamate.52.3.0843.

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On December 14, 2012, member states of the International Telecommunication Union (ITU) approved the Final Acts of the World Conference on International Telecommunications. The ITU is the specialized agency of the United Nations fostering cooperation on information and communication technologies, and, through world conferences, it periodically revises the International Telecommunication Regulations (ITRs), a treaty the ITU adopted in 1988 However, in December 2012, the Final Acts, the manner in which they were approved, and the World Conference proved controversial, and these controversies will adversely affect the impact of the Final Acts and the revised ITRs on international telecommunications law.
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Ivantsov, Sergey, and Tat'yana Molchanova. "Information and telecommunications technologies – the modern reality of crime." Vestnik of the St. Petersburg University of the Ministry of Internal Affairs of Russia 2020, no. 4 (December 11, 2020): 89–96. http://dx.doi.org/10.35750/2071-8284-2020-4-89-96.

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The presented article examines the current state of crime in the field of information and telecommunication technologies, taking into account the new direction of the development of crime. Afteranalyzing foreign and Russian data, the authors emphasize that the information space has become one of the most common areas in the use of the COVID-19 virus pandemic to commit various crimes. Separately, this article examines the landscape of threats of crimes in the field of information and telecommunication technologies during the COVID-1 pandemic, and also analyzes the practice of detecting crimes under Art. 158, 159, 159.3, 159.6, 228.1 of the Criminal Code of the Russian Federation for federal districts. The authors argue that the pandemic has significantly changed the nature and intensity of all crime, but the sphere of information and telecommunications technologies has undergone the greatest criminalization, which is reflected in crime statistics. In conclusion, the authors conclude that COVID-19 will be a turning point in changing the face of crime, as well as measures to combat crime in this particular area of relations. It points to the initiative of Russia within the framework of the UN to develop a comprehensive international convention on countering the use of information and telecommunication technologies for criminal purposes.
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Sharma, Umesh, Stewart Lawrence, and Carolyn Fowler. "New public management and accounting in a Fiji telecommunications company." Accounting History 17, no. 3-4 (August 2012): 331–49. http://dx.doi.org/10.1177/1032373212443534.

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The aim of this article is to investigate tension between the implementation of new public management and associated accounting technologies in the Fiji telecommunication sector and the indigenous Fijian culture and political structure. In doing so, the article contrasts the economic-based reforms of the telecommunications sector (from 1990), with the traditional social relations that were exercised post-independence (1970 onwards). This research aim is achieved by focusing on archival documents and interviews with those involved in Fiji telecommunications. We illustrate how the use of new public management concepts replaced traditional social relations with the disciplinary technologies of modern capitalism but were also altered as a result of these social relations. In the Fiji Telecommunications company, the cultural conflicts and political influences led to the new public management process being resisted and modified to reduce the tension between economic and social relations.
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Kubanova, A. A., A. A. Martynov, I. N. Lesnaya, A. A. Kubanov, and Ye V. Pirogova. "Telecommunications technologies used in dermatovenerology." Vestnik dermatologii i venerologii 86, no. 5 (October 15, 2010): 55–58. http://dx.doi.org/10.25208/vdv943.

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The article discusses key lines of activities of the State Research Center for Dermatology and Venereology related to the development of telemedicine in the process of rendering specialized medical aid to dermatovenerological patients and distance education for experts in the field of dermatology, venereology and cosmetology. It presents up-to-date data on the potential and level of development of information and telecommunications technologies in specialized dermatovenerological medical institutions.
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Dissertations / Theses on the topic "Telecommunications technologies"

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Yeh, Emily. "Technologies and policies for an evolving telecommunications sector in China." Thesis, Massachusetts Institute of Technology, 1995. http://hdl.handle.net/1721.1/36081.

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Joseph, Robin. "Enhancing OpenStack clouds using P2P technologies." Thesis, Blekinge Tekniska Högskola, Institutionen för datalogi och datorsystemteknik, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:bth-15412.

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It was known for a long time that OpenStack has issues with scalability. Peer-to-Peer systems, on the other hand, have proven to scale well without significant reduction of performance. The objectives of this thesis are to study the challenges associated with P2P-enhanced clouds and present solutions for overcoming them. As a case study, we take the architecture of the P2P-enhanced OpenStack implemented at Ericsson that uses the CYCLON P2Pprotocol. We study the OpenStack architecture and P2P technologies and finally propose solutions and provide possibilities in addressing the challenges that are faced by P2P-enhanced OpenStack clouds. We emphasize mainly on a decentralized identity service and management of Virtual machine images. This work also investigates the characterization of P2P architectures for their use in P2P-enhanced OpenStack clouds. The results section shows that the proposed solution enables the existing P2P system to scale beyond what was originally possible. We also show that the P2P-enhanced system performs better than the standard OpenStack.

Ericsson Cloud Research supported this work through the guidance of Dr. Fetahi Wuhib, Dr. Joao Monteiro Soares and Vinay Yadav, Experienced Researchers, Ericsson Cloud Research, Kista, Stockholm.

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Che, Yu. "A study on applying American distance education technologies to distance education in China." Instructions for remote access. Click here to access this electronic resource. Access available to Kutztown University faculty, staff, and students only, 1993. http://www.kutztown.edu/library/services/remote_access.asp.

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Thesis (M.S.)--Kutztown University of Pennsylvania, 1993.
Source: Masters Abstracts International, Volume: 45-06, page: 2805. Abstract precedes thesis as 2 preliminary leaves. Typescript. Includes bibliographical references (leaves 48-51).
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Armellini, Cesar Alejandro. "Educational technology in in-service language teacher education in open and distance learning settings." Thesis, University of Kent, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.322837.

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Ure, John. "The political economy of telecommunications in Hong Kong : information technologies and the management of change." Thesis, University of East London, 1992. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.304675.

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Bremner, Duncan James. "25 years of network access technologies : from voice to internet : the changing face of telecommunications." Thesis, University of Glasgow, 2015. http://theses.gla.ac.uk/6670/.

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This work contributes to knowledge in the field of semiconductor system architectures, circuit design and implementation, and communications protocols. The work starts by describing the challenges of interfacing legacy analogue subscriber loops to an electronic circuit contained within the Central Office (Telephone Exchange) building. It then moves on to describe the globalisation of the telecom network, the demand for software programmable devices to enable system customisation cost effectively, and the creation of circuit and system blocks to realise this. The work culminates in the application challenges of developing a wireless RF front end, including antenna, for an Ultra Wideband communications systems applications. This thesis illustrates how higher levels of integration over the period of 1981 to 2010 have influenced the realisation of complex system level products, particularly analogue signal processing capabilities for communications applications. There have been many publications illustrating the impact of technology advancement from an economic or technology perspective. The thesis shows how technology advancement has impacted the physical realisation of semiconductor products over the period, at system, circuit, and physical implementation levels.
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Szumski, Edward Joseph. "Development of a curriculum for a course in photonics and fiber-optic technologies for telecommunications." CSUSB ScholarWorks, 1997. https://scholarworks.lib.csusb.edu/etd-project/1403.

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Phoshoko, Silas M. "Radio frequency spectrum monitoring : Officers' acceptance of minitoring technologies such as fixed direction finders. /." Thesis, University of the Western Cape, 2006. http://etd.uwc.ac.za/index.php?module=etd&action=viewtitle&id=gen8Srv25Nme4_7879_1256198977.

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The research focuses on the acceptance of new technologies within the telecommunications industry. The study examines three models namely Innovation theory, Theory of Reason Action (TRA), and Technology Acceptance Model (TAM). This study explores the technology acceptance models in order to explain why certain monitoring officers at ICASA would prefer specific technologies over others. Models of interest could be the innovation theory, TRA and TAM. After reviewing both models, the author will examine the TAM in detail as a model of interest in this study. In turn, this model is expected to assist us to understand why monitoring officer's at ICASA would prefer a particular frequency monitoring technology over the other.

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Chiu, Yiu-kwong. "Interactive television : market, management, technologies & uncertainties /." Hong Kong : University of Hong Kong, 1996. http://sunzi.lib.hku.hk/hkuto/record.jsp?B17957655.

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Simancas, Westley N. "Telecommunications growth in Latin America a comparative analysis, the development and policy of technologies in emerging markets." Thesis, Monterey, California : Naval Postgraduate School, 2009. http://edocs.nps.edu/npspubs/scholarly/theses/2009/Sep/09Sep%5FSimancas.pdf.

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Thesis (M.S. in Information Systems Technology Management)--Naval Postgraduate School, September 2009.
Thesis Advisor(s): Lundy, Bert. "September 2009." Description based on title screen as viewed on November 6,2009. Author(s) subject terms: Telecommunications, Wireless, Cellular, Telephone, Internet, Television, Policy, Regulation, Latin America, Colombia, Mexico, Venezuela, Telmex, CANTV, America Móvil. Includes bibliographical references (p. 131-137). Also available in print.
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Books on the topic "Telecommunications technologies"

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Llana, Andres. Telecommunications, technologies & applications. Charleston, S.C: Computer Technology Research Corp., 1995.

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Toby, Skandier, ed. Telecommunications technologies reference. Indianapolis, IN: Cisco Press, 2003.

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Carey, John. Telecommunications technologies and public broadcasting. Washington, D.C: Corporation for Public Broadcasting, 1986.

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Telecommunications technologies for small businesses. Upper Saddle River, NJ: Prentice Hall PTR, 2002.

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Esmailzadeh, Riaz. Broadband Telecommunications Technologies and Management. Chichester, UK: John Wiley & Sons, Ltd, 2016. http://dx.doi.org/10.1002/9781119114956.

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Esmailzadeh, Riaz. Broadband telecommunications technologies and management. Hoboken: John Wiley & Sons Inc., 2016.

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Salah, Aidarous, Plevyak Thomas, and IEEE Communications Society, eds. Telecommunications network management: Technologies and implementations. New York: IEEE Press, 1998.

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1964-, Goggin Gerard, and Hjorth Larissa, eds. Mobile technologies: From telecommunications to media. New York: Routledge, 2008.

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Venieris, Iakovos, Fabrizio Zizza, and Thomas Magedanz, eds. Object Oriented Software Technologies in Telecommunications. Chichester, UK: John Wiley & Sons, Ltd, 2000. http://dx.doi.org/10.1002/0470841869.

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Communities, Commission of the European. Esprit: Task force, information and telecommunications technologies. Luxembourg: Office for Official Publications of the European Communities, 1985.

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Book chapters on the topic "Telecommunications technologies"

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Asif, Saad Z. "Semiconductors in Mobile Telecommunications." In 5G Mobile Communications Concepts and Technologies, 81–96. First edition. | Boca Raton, FL : CRC Press/Taylor & Francis: CRC Press, 2018. http://dx.doi.org/10.1201/9780429466342-6.

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Labati, Ruggero Donida, Vincenzo Piuri, and Fabio Scotti. "Biometric Privacy Protection: Guidelines and Technologies." In E-Business and Telecommunications, 3–19. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-35755-8_1.

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Onyema, E. M., A. E. Dinar, S. Ghouali, B. Merabet, R. Merzougui, and M. Feham. "Cyber Threats, Attack Strategy, and Ethical Hacking in Telecommunications Systems." In Blockchain Technologies, 25–45. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-1960-2_2.

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Duke, Alistair, and Marc Richardson. "A Semantic Service-Oriented Architecture for the Telecommunications Industry." In Semantic Web Technologies, 281–99. Chichester, UK: John Wiley & Sons, Ltd, 2006. http://dx.doi.org/10.1002/047003033x.ch13.

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Frempong, Godfred, and Anders Henten. "Telecommunications in Africa – Regulation, Technologies, and Markets." In The African Mobile Story, 41–50. New York: River Publishers, 2022. http://dx.doi.org/10.1201/9781003339694-3.

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Golubev, Sergey S., Aleksandr I. Ivanus, Dina A. Aybosynova, and Viktor A. Chinaev. "The Application of Artificial Intelligence Technologies in Telecommunications." In Studies in Systems, Decision and Control, 341–51. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-56433-9_36.

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Christophides, Vassilis, Richard Hull, Gregory Karvounarakis, Akhil Kumar, Geliang Tong, and Ming Xiong. "Beyond Discrete E-Services: Composing Session-Oriented Services in Telecommunications." In Technologies for E-Services, 58–73. Berlin, Heidelberg: Springer Berlin Heidelberg, 2001. http://dx.doi.org/10.1007/3-540-44809-8_5.

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Santos, Ricardo, and Bráulio Alturas. "Factors Influencing Consumers to Shop Online for Computer/Telecommunications Equipment." In Marketing and Smart Technologies, 595–605. Singapore: Springer Singapore, 2022. http://dx.doi.org/10.1007/978-981-16-9272-7_48.

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Escudero-Garzás, J. Joaquín, and Ana García-Armada. "Emerging Telecommunications Technologies." In Networking and Telecommunications, 545–61. IGI Global, 2010. http://dx.doi.org/10.4018/978-1-60566-986-1.ch035.

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The goal of this chapter is to introduce the novel concept of cognitive radio (CR) for wireless telecommunications. Cognitive radios are a new type of radio devices that include cognition and reconfigurability features. The raising number of studies in different areas of research shows their potential and the expectation created among the telecommunications community. In this chapter, the authors first introduce the reader to the new paradigm that cognitive radio networks have created; more specifically, they explain in detail the new next generation networks. Given that our intention is to introduce cognitive radio, the authors focus on the challenges in PHY layer and MAC sublayer and the most relevant studies in these fields. Finally, the integration of game theory and cognitive radio creates a new paradigm where the advantages of both technologies merge to solve complex problems.
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Yigitcanlar, Tan, and Hoon Jung Han. "Urban Telecommunications Network." In Wireless Technologies, 1136–49. IGI Global, 2012. http://dx.doi.org/10.4018/978-1-61350-101-6.ch503.

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Rapidly developing information and telecommunication technologies and their platforms in the late 20th Century helped improve urban infrastructure management and influenced quality of life. Telecommunication technologies make it possible for people to deliver text, audio and video material using wired, wireless or fiber-optic networks. Technologies convergence amongst these digital devices continues to create new ways in which the information and telecommunication technologies are used. The 21st Century is an era where information has converged, in which people are able to access a variety of services, including internet and location based services, through multi-functional devices such as mobile phones. This chapter discusses the recent developments in telecommunication networks and trends in convergence technologies, their implications for urban infrastructure planning, and for the quality of life of urban residents.
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Conference papers on the topic "Telecommunications technologies"

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Mynampati, Venkata Naga Poornima, Feroz Ahamed Iqbal Mariam, Bharath Krishnan Muralidharan, and Dereje Agonafer. "Review of Reliability of the Cooling Technologies in the Telecommunications Systems." In ASME 2009 International Mechanical Engineering Congress and Exposition. ASMEDC, 2009. http://dx.doi.org/10.1115/imece2009-13016.

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The present trends in the cooling technologies have marked a significant improvement in the outdoor telecommunications systems and the need of cooling has marked an important requirement for the proper functioning of these cabinets. This aim of this paper is to review all of the articles and to gather the information regarding the different cooling technologies used and their reliability in the outdoor telecommunication systems especially the telecommunication cabinets.
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"Telecommunications technologies and systems." In 2015 12th International Conference on Telecommunication in Modern Satellite, Cable and Broadcasting Services (TELSIKS). IEEE, 2015. http://dx.doi.org/10.1109/telsks.2015.7357750.

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null. "Telecommunications trends and technologies." In IEE Colloquium on Emerging Interactive Multimedia Services. IEE, 1997. http://dx.doi.org/10.1049/ic:19970154.

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Kelly, C. "WDM technologies in telecommunications." In IEE Colloquium: `Towards Terabit Transmission'. IEE, 1995. http://dx.doi.org/10.1049/ic:19950724.

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Nakazawa, Masataka. "Next generation ultrafast telecommunications technologies." In 2007 European Conference on Lasers and Electro-Optics and the International Quantum Electronics Conference. IEEE, 2007. http://dx.doi.org/10.1109/cleoe-iqec.2007.4387086.

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Brown, Charles E. "Power Plant Considerations in Future Telecommunications Technologies." In INTELEC '86. IEEE, 1986. http://dx.doi.org/10.1109/intlec.1986.4794397.

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Aguado, Marina, Oscar Onandi, Eduardo Jacob, Christian Pinedo, Purificacion Saiz, and Marivi Higuero. "WiMAX Role on CBTC Systems." In ASME/IEEE 2007 Joint Rail Conference and Internal Combustion Engine Division Spring Technical Conference. ASMEDC, 2007. http://dx.doi.org/10.1115/jrc/ice2007-40103.

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The recent progresses in mobile telecommunications technologies have allowed railway telecommunications technology to go a step forward, and, in the same way, the railway control systems. In this sense, while the mobile telecommunications technology evolved from the first generation of analogue mobile communication systems to what is known today as B3G (Beyond 3G), the same occurred with the telecommunication systems used in railways, from those based on analogue telecommunications, to the most recent ones based on 2G such as GSM-R or TETRA. Till recently, there was a technological gap regarding high mobility environments, high transmission rate and high interactivity (low latency). However, new emerging telecommunications technologies have shortened this gap significantly. This way, the train control systems will be affected by the availability of telecommunications technologies capable of offering earth-train broadband communications in real time. This article presents a telecommunications network architecture based on WiMAX (Worldwide Interoperability for Microwave Access) mobile technology (IEEE 802.16e) that fulfils the telecommunications needs in the railway environment. The WiMAX mobile technology most relevant features are: transmission rates up to 30Mbps at 15 km distance; mobility support up to 200km/h; QoS, security, low latency, fast, scalable and cost effective deployment, mainly compared to GSM-R deployment. In the mobile node design of this network telecommunications architecture, the multipath fading effect, and the Doppler effect, present in high speed mobility scenarios, have been taken into account. An improvement in the handoff between BSs, through a neighbouring and predictive mobility algorithm, is included. The architecture proposed supports the functional and system requirements identified in the UIC Project EIRENE (European Integrated Railway Radio Enhanced Network), and demanded to GSM-R technology. Measures on a real testbed and a model developed with the discrete event simulation tool, Opnet, have been employed in this work.
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"Telecommunication technologies, networks and systems." In 2017 13th International Conference on Advanced Technologies, Systems and Services in Telecommunications (TELSIKS). IEEE, 2017. http://dx.doi.org/10.1109/telsks.2017.8246302.

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"Telecommunications techniques." In 2017 13th International Conference on Advanced Technologies, Systems and Services in Telecommunications (TELSIKS). IEEE, 2017. http://dx.doi.org/10.1109/telsks.2017.8246283.

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"Sensing Technologies." In 2007 7th International Conference on ITS Telecommunications. IEEE, 2007. http://dx.doi.org/10.1109/itst.2007.4295844.

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Reports on the topic "Telecommunications technologies"

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Haynes, T. E. Ion Implantation Processing Technologies for Telecommunications Electronics. Office of Scientific and Technical Information (OSTI), May 2000. http://dx.doi.org/10.2172/755647.

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Rubin, Alex, Alan Omar Loera Martinez, Jake Dow, and Anna Puglisi. The Huawei Moment. Center for Security and Emerging Technology, July 2021. http://dx.doi.org/10.51593/20200079.

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For the first time, a Chinese company—Huawei—is set to lead the global transition from one key national security infrastructure technology to the next. How did Washington, at the beginning of the twenty-first century, fail to protect U.S. firms in this strategic technology and allow a geopolitical competitor to take a leadership position in a national security relevant critical infrastructure such as telecommunications? This policy brief highlights the characteristics of 5G development that China leveraged, exploited, and supported to take the lead in this key technology. The Huawei case study is in some ways the canary in the coal mine for emerging technologies and an illustration of what can happen to U.S. competitiveness when China’s companies do not have to base decisions on market forces.
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Francesco, Petruccione,, Gastrow, Michael, Hadzic, Senka, Limpitlaw, Justine, Paul, Babu Sena, Wolhuter, Riaan, and Kies, Carl. Evaluation of Alternative Telecommunication Technologies for the Karoo Central Astronomy Advantage Area. Academy of Science of South Africa (ASSAf), 2021. http://dx.doi.org/10.17159/assaf.2021/0073.

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The National Research Foundation (NRF) requested the Academy of Science of South Africa (ASSAf), on behalf of South African Radio Astronomy Observatory (SARAO) and the Square Kilometre Array (SKA), to undertake an independent and objective evaluation of potential alternative telecommunication technologies for the areas of the Karoo Central Astronomy Advantage Areas (KCAAA). The study encompasses regulatory, public sphere, and technical dimensions to explore options for maintaining the functionality of the telescope while, at the same time, delivering appropriate connectivity solutions for local communities.The objectives of this study are as follows: 1) Assess the technologies currently being, or planning to be, deployed through existing alternative communications programs managed by SARAO, including whether these technologies are comparable with market available technologies that could feasibly be deployed in the KCAAA; and 2) Assessment of current and future telecommunication technologies that may act as suitable replacement and/or improvement (functional and feasible) for existing detrimental technologies, utilised in the KCAAA. This report provides a critical background into the relationship between the SKA and local communities as it relates to ICTs in the area. Based on this understanding, potential technology solutions are proposed to ensure residents of the KCAAA are still afforded valuable access to information and communication technologies (ICTs) within the parameters of affordability, desirability and feasibility.
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Perdigão, Rui A. P. Beyond Quantum Security with Emerging Pathways in Information Physics and Complexity. Synergistic Manifolds, June 2022. http://dx.doi.org/10.46337/220602.

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Information security and associated vulnerabilities have long been a pressing challenge, from the fundamental scientific backstage to the frontline across the most diverse sectors of society. At the tip of the iceberg of this problem, the citizens immediately feel that the reservation of privacy and the degradation of the quality and security of the information and communication on which they depend for the day-to-day activities, already of crucial relevance, are at stake. Naturally though, the challenges do not end there. There is a whole infrastructure for storing information, processing and communication, whose security and reliability depend on key sectors gearing modern society – such as emergency communication systems (medical, civil and environmental protection, among others), transportation and geographic information, the financial communications systems at the backbone of day-to-day transactions, the information and telecommunications systems in general. And crucially the entire defence ecosystem that in essence is a stalwart in preventing our civilisation to self-annihilate in full fulfilment of the second principle of thermodynamics. The relevance of the problem further encompasses the preservation of crucial values such as the right to information, security and integrity of democratic processes, internal administration, justice, defence and sovereignty, ranging from the well-being of the citizen to the security of the nation and beyond. In the present communication, we take a look at how to scientifically and technically empower society to address these challenges, with the hope and pragmatism enabled by our emerging pathways in information physics and complexity. Edging beyond classical and quantum frontiers and their vulnerabilities to unveil new principles, methodologies and technologies at the core of the next generation system dynamic intelligence and security. To illustrate the concepts and tools, rather than going down the road of engineered systems that we can ultimately control, we take aim at the bewildering complexity of nature, deciphering new secrets in the mathematical codex underlying its complex coevolutionary phenomena that so heavily impact our lives, and ultimately bringing out novel insights, methods and technologies that propel information physics and security beyond quantum frontiers.
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Lopez Carbajal, Hector A. Telecommunication Sector Policies for the Development of Information and Communication Technologies in Panama: Part I. Inter-American Development Bank, August 2018. http://dx.doi.org/10.18235/0001309.

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De Lira Salvatierra, Irving Arturo. Telecommunication Sector Policies for the Development of Information and Communication Technologies in Panama: Part II. Inter-American Development Bank, August 2018. http://dx.doi.org/10.18235/0001311.

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Polyakova, Tatiyana An, Ignat S. Boychenko, and Nataliya An Troyan. Information and legal support of information security in the transport sector in the context of digital development. DOI CODE, 2021. http://dx.doi.org/10.18411/2021-0339-1001-46156.

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The current paper deals with the information and legal support of information security in the transport sector in the context of digital development. Thus, the development of information and telecommunication technologies and the digitalization of public relations have also affected the field of transport and transport services. There have appeared not only new Транспортное право и безопасность. 2021. № 3(39) 148 transportation means, such as unmanned aircraft, but there are also being introduced information systems related to the identification of passengers in transport. The development of electronic interaction between various subjects of information exchange in transport is a consequence of the global digitalization of public relations, which creates certain risks of enforcing information security, a threat to the information transport infrastructure.
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FEDOTKINA, S. A., O. V. MUZALEVA, and E. V. KHUGAEVA. RETROSPECTIVE ANALYSIS OF THE USE OF TELEMEDICINE TECHNOLOGIES FOR THE PREVENTION, DIAGNOSIS AND TREATMENT OF HYPERTENSION. Science and Innovation Center Publishing House, 2021. http://dx.doi.org/10.12731/978-0-615-67320-2-4-22.

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Introduction. The economic losses associated with disability due to diseases of the circulatory system, as well as the costs of providing medical care to patients suffering from heart and vascular diseases, are increasing annually. The state preventive measures currently being carried out are of a delayed nature. The results of the medical examination of the population of the Russian Federation in recent years (2015-2019) indicate that the incidence of cardiovascular diseases, including hypertension, is at a fairly high level. In the middle of the last century, the Concept of risk factors for the development of chronic non-communicable diseases were formulated, in the structure of which cardiovascular diseases, including arterial hypertension, occupies one of the primary positions. The concept is based on the results of promising epidemiological studies, and, at present, is a methodological basis for planning and organizing primary prevention of cardiovascular diseases. The purpose of the study. Based on the analysis of literary sources (including foreign ones) containing experience in the use of telemedicine technologies, to assess their significance for the prevention, diagnosis and treatment of hypertension, as well as forecasting improvements in the quality of medical care when adapting to the use of clinical recommendations. Materials and methods. The article provides an analytical review of the use of modern telemedicine technologies in the prevention of hypertension. The results of the study and their discussion. The analysis of literary sources has shown that in the context of the progress of information and telecommunication technologies in the healthcare system, a fundamentally new direction has appeared in the organization and provision of medical care to the population - telemedicine, which will ensure the modern level of prevention, detection and treatment of chronic non-communicable diseases, and also determines positive medical, social and economic performance indicators. To date, updates in the legislative framework of the Russian Federation are aimed at ensuring that medical care with the use of telemedicine technologies is more widespread, taking into account the standards of medical care and clinical recommendations. Conclusion. Based on a review of literature sources, it has been established that the modern solution to the problem of improving the quality of medical care for patients, including those with hypertension, diseases is medical care using telemedicine technologies that prove their medical, social and economic effectiveness.
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African Open Science Platform Part 1: Landscape Study. Academy of Science of South Africa (ASSAf), 2019. http://dx.doi.org/10.17159/assaf.2019/0047.

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This report maps the African landscape of Open Science – with a focus on Open Data as a sub-set of Open Science. Data to inform the landscape study were collected through a variety of methods, including surveys, desk research, engagement with a community of practice, networking with stakeholders, participation in conferences, case study presentations, and workshops hosted. Although the majority of African countries (35 of 54) demonstrates commitment to science through its investment in research and development (R&D), academies of science, ministries of science and technology, policies, recognition of research, and participation in the Science Granting Councils Initiative (SGCI), the following countries demonstrate the highest commitment and political willingness to invest in science: Botswana, Ethiopia, Kenya, Senegal, South Africa, Tanzania, and Uganda. In addition to existing policies in Science, Technology and Innovation (STI), the following countries have made progress towards Open Data policies: Botswana, Kenya, Madagascar, Mauritius, South Africa and Uganda. Only two African countries (Kenya and South Africa) at this stage contribute 0.8% of its GDP (Gross Domestic Product) to R&D (Research and Development), which is the closest to the AU’s (African Union’s) suggested 1%. Countries such as Lesotho and Madagascar ranked as 0%, while the R&D expenditure for 24 African countries is unknown. In addition to this, science globally has become fully dependent on stable ICT (Information and Communication Technologies) infrastructure, which includes connectivity/bandwidth, high performance computing facilities and data services. This is especially applicable since countries globally are finding themselves in the midst of the 4th Industrial Revolution (4IR), which is not only “about” data, but which “is” data. According to an article1 by Alan Marcus (2015) (Senior Director, Head of Information Technology and Telecommunications Industries, World Economic Forum), “At its core, data represents a post-industrial opportunity. Its uses have unprecedented complexity, velocity and global reach. As digital communications become ubiquitous, data will rule in a world where nearly everyone and everything is connected in real time. That will require a highly reliable, secure and available infrastructure at its core, and innovation at the edge.” Every industry is affected as part of this revolution – also science. An important component of the digital transformation is “trust” – people must be able to trust that governments and all other industries (including the science sector), adequately handle and protect their data. This requires accountability on a global level, and digital industries must embrace the change and go for a higher standard of protection. “This will reassure consumers and citizens, benefitting the whole digital economy”, says Marcus. A stable and secure information and communication technologies (ICT) infrastructure – currently provided by the National Research and Education Networks (NRENs) – is key to advance collaboration in science. The AfricaConnect2 project (AfricaConnect (2012–2014) and AfricaConnect2 (2016–2018)) through establishing connectivity between National Research and Education Networks (NRENs), is planning to roll out AfricaConnect3 by the end of 2019. The concern however is that selected African governments (with the exception of a few countries such as South Africa, Mozambique, Ethiopia and others) have low awareness of the impact the Internet has today on all societal levels, how much ICT (and the 4th Industrial Revolution) have affected research, and the added value an NREN can bring to higher education and research in addressing the respective needs, which is far more complex than simply providing connectivity. Apart from more commitment and investment in R&D, African governments – to become and remain part of the 4th Industrial Revolution – have no option other than to acknowledge and commit to the role NRENs play in advancing science towards addressing the SDG (Sustainable Development Goals). For successful collaboration and direction, it is fundamental that policies within one country are aligned with one another. Alignment on continental level is crucial for the future Pan-African African Open Science Platform to be successful. Both the HIPSSA ((Harmonization of ICT Policies in Sub-Saharan Africa)3 project and WATRA (the West Africa Telecommunications Regulators Assembly)4, have made progress towards the regulation of the telecom sector, and in particular of bottlenecks which curb the development of competition among ISPs. A study under HIPSSA identified potential bottlenecks in access at an affordable price to the international capacity of submarine cables and suggested means and tools used by regulators to remedy them. Work on the recommended measures and making them operational continues in collaboration with WATRA. In addition to sufficient bandwidth and connectivity, high-performance computing facilities and services in support of data sharing are also required. The South African National Integrated Cyberinfrastructure System5 (NICIS) has made great progress in planning and setting up a cyberinfrastructure ecosystem in support of collaborative science and data sharing. The regional Southern African Development Community6 (SADC) Cyber-infrastructure Framework provides a valuable roadmap towards high-speed Internet, developing human capacity and skills in ICT technologies, high- performance computing and more. The following countries have been identified as having high-performance computing facilities, some as a result of the Square Kilometre Array7 (SKA) partnership: Botswana, Ghana, Kenya, Madagascar, Mozambique, Mauritius, Namibia, South Africa, Tunisia, and Zambia. More and more NRENs – especially the Level 6 NRENs 8 (Algeria, Egypt, Kenya, South Africa, and recently Zambia) – are exploring offering additional services; also in support of data sharing and transfer. The following NRENs already allow for running data-intensive applications and sharing of high-end computing assets, bio-modelling and computation on high-performance/ supercomputers: KENET (Kenya), TENET (South Africa), RENU (Uganda), ZAMREN (Zambia), EUN (Egypt) and ARN (Algeria). Fifteen higher education training institutions from eight African countries (Botswana, Benin, Kenya, Nigeria, Rwanda, South Africa, Sudan, and Tanzania) have been identified as offering formal courses on data science. In addition to formal degrees, a number of international short courses have been developed and free international online courses are also available as an option to build capacity and integrate as part of curricula. The small number of higher education or research intensive institutions offering data science is however insufficient, and there is a desperate need for more training in data science. The CODATA-RDA Schools of Research Data Science aim at addressing the continental need for foundational data skills across all disciplines, along with training conducted by The Carpentries 9 programme (specifically Data Carpentry 10 ). Thus far, CODATA-RDA schools in collaboration with AOSP, integrating content from Data Carpentry, were presented in Rwanda (in 2018), and during17-29 June 2019, in Ethiopia. Awareness regarding Open Science (including Open Data) is evident through the 12 Open Science-related Open Access/Open Data/Open Science declarations and agreements endorsed or signed by African governments; 200 Open Access journals from Africa registered on the Directory of Open Access Journals (DOAJ); 174 Open Access institutional research repositories registered on openDOAR (Directory of Open Access Repositories); 33 Open Access/Open Science policies registered on ROARMAP (Registry of Open Access Repository Mandates and Policies); 24 data repositories registered with the Registry of Data Repositories (re3data.org) (although the pilot project identified 66 research data repositories); and one data repository assigned the CoreTrustSeal. Although this is a start, far more needs to be done to align African data curation and research practices with global standards. Funding to conduct research remains a challenge. African researchers mostly fund their own research, and there are little incentives for them to make their research and accompanying data sets openly accessible. Funding and peer recognition, along with an enabling research environment conducive for research, are regarded as major incentives. The landscape report concludes with a number of concerns towards sharing research data openly, as well as challenges in terms of Open Data policy, ICT infrastructure supportive of data sharing, capacity building, lack of skills, and the need for incentives. Although great progress has been made in terms of Open Science and Open Data practices, more awareness needs to be created and further advocacy efforts are required for buy-in from African governments. A federated African Open Science Platform (AOSP) will not only encourage more collaboration among researchers in addressing the SDGs, but it will also benefit the many stakeholders identified as part of the pilot phase. The time is now, for governments in Africa, to acknowledge the important role of science in general, but specifically Open Science and Open Data, through developing and aligning the relevant policies, investing in an ICT infrastructure conducive for data sharing through committing funding to making NRENs financially sustainable, incentivising open research practices by scientists, and creating opportunities for more scientists and stakeholders across all disciplines to be trained in data management.
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