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Artykuły w czasopismach na temat "Connectivity infrastructure"
Sandee, Henry. "Infrastructure for Asian Connectivity". Bulletin of Indonesian Economic Studies 49, nr 3 (grudzień 2013): 390–91. http://dx.doi.org/10.1080/00074918.2013.850648.
Pełny tekst źródłaBhattacharyay, Biswa Nath, Masahiro Kawai i Rajat M. Nag. "Infrastructure for Asian Connectivity". Southeast Asian Economies 30, nr 3 (2013): 337. http://dx.doi.org/10.1355/ae30-3j.
Pełny tekst źródłaKende, Michael, Sonia Livingstone, Scott Minehane, Michael Minges, Simon Molloy i George Sciadas. "GLOBAL CONNECTIVTY REPORT 2022. CHAPTERS 3-4. ACCELERATING PROGRESS TOWARDS UNIVERSAL AND MEANINGFUL CONNECTIVITY & THE CRITICAL ROLE OF MIDDLE-MILE CONNECTIVITY". SYNCHROINFO JOURNAL 8, nr 4 (2022): 22–32. http://dx.doi.org/10.36724/2664-066x-2022-8-4-22-32.
Pełny tekst źródłaNetirith, Narthsirinth, i Mingjun Ji. "Analysis of the Efficiency of Transport Infrastructure Connectivity and Trade". Sustainability 14, nr 15 (4.08.2022): 9613. http://dx.doi.org/10.3390/su14159613.
Pełny tekst źródłaHill, Hal, Takatoshi Ito, Kazumasa Iwata, Colin McKenzie i Shujiro Urata. "Connectivity and Infrastructure: Editors' Overview". Asian Economic Policy Review 11, nr 2 (lipiec 2016): 161–75. http://dx.doi.org/10.1111/aepr.12150.
Pełny tekst źródłaHakman, M. "Connectivity Infrastructure and Components for POCT Environments - Overall Infrastructure". Journal of the Association for Laboratory Automation 6, nr 3 (1.07.2001): 60–68. http://dx.doi.org/10.1016/s1535-5535(04)00138-8.
Pełny tekst źródłaHakman, Mikael, i Torgny Groth. "Connectivity Infrastructure and Components for POCT Environments — Overall Infrastructure". JALA: Journal of the Association for Laboratory Automation 6, nr 3 (czerwiec 2001): 60–68. http://dx.doi.org/10.1016/s1535-5535-04-00138-8.
Pełny tekst źródłaBHATTACHARYAY, BISWA NATH. "INSTITUTIONS FOR ASIAN CONNECTIVITY". Journal of International Commerce, Economics and Policy 01, nr 02 (październik 2010): 309–35. http://dx.doi.org/10.1142/s1793993310000172.
Pełny tekst źródłaBhattacharyay, Biswa Nath. "Infrastructure for ASEAN Connectivity and Integration". Asean Economic Bulletin 27, nr 2 (2010): 200. http://dx.doi.org/10.1355/ae27-2d.
Pełny tekst źródłaMa, Mingxin, i Jing Liang. "Research on the connectivity of port infrastructure along the 21st Century Maritime Silk Road". SHS Web of Conferences 192 (2024): 01009. http://dx.doi.org/10.1051/shsconf/202419201009.
Pełny tekst źródłaRozprawy doktorskie na temat "Connectivity infrastructure"
Bliss-Ketchum, Leslie Lynne. "The Impact of Infrastructure on Habitat Connectivity for Wildlife". PDXScholar, 2019. https://pdxscholar.library.pdx.edu/open_access_etds/4832.
Pełny tekst źródłaBormpoudakis, Dimitrios. "Green infrastructure and landscape connectivity in England : a political ecology approach". Thesis, University of Kent, 2016. https://kar.kent.ac.uk/56639/.
Pełny tekst źródłaAbdullah, Nayeem Mohammad. "Development of distributed generation infrastructure for microgrid connectivity to operational power systems". FIU Digital Commons, 2010. http://digitalcommons.fiu.edu/etd/1099.
Pełny tekst źródłaMahmoud, Noha Gamal El-Din Abdel Hamid Hassan. "Green infrastructure in a Middle Eastern environment : promoting social-ecological connectivity in Greater Cairo". Thesis, University of Sheffield, 2011. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.554214.
Pełny tekst źródłaAhlmer, Anna-Klara. "Integrating remotely sensed hydrologic parameters into an index of sediment connectivity". Thesis, KTH, Hållbar utveckling, miljövetenskap och teknik, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-235791.
Pełny tekst źródłaDe förväntade ökningarna i nederbörd och temperatur i Skandinavien, och speciellt extrem korttidsnederbörd, kommer att öka frekvensen av översvämningar. Urbana områden är de mest sårbara, och speciellt väginfrastrukturen. Ackumuleringen av stora volymer av vatten och sediment där väg och vattendrag möts leder till allvarliga konsekvenser för dräneringskonstruktionerna. Behovet av ett verktyg för att identifiera egenskaper som påverkar förekomsten av översvämningar, och för att förutsäga framtida händelser är väsentligt. Studien integrerar markfuktighet både rumsligt och tidsmässigt i forskningen om metoder för översvämningsrisker. Markfuktighetsdata är inkluderat från fjärranalysteknik, med fokus på de specifika satelliterna för markfuktighet, ASCAT och SMOS. Vidare är flertalet faktorer (PCDs) inkluderade för att identifiera egenskaper i avrinningsområden som är benägna till översvämning samt en inventering av nuvarande vägdräneringskonstruktioner. Slutligen är ett index med sediment connectivity (Cavalli et al., 2013) implementerat för att se flödet av vatten och sediment inom avrinningsområdet. En fallstudie med två områden i Sverige, Västra Götaland och Värmland, som drabbades av allvarliga översvämningar i augusti 2014 är inkluderat. Resultaten visar att metoden att använda markfuktighet från satellitdata är lovande för inkludering i uppskattningar av översvämningsrisk och i indexet med sediment connectivity.
Mudali, Pragasen. "Topology control for wireless mesh networks and its effect on network performance". Thesis, University of Zululand, 2017. http://hdl.handle.net/10530/1565.
Pełny tekst źródłaInfrastructureWireless Mesh Networks (I-WMNs) are increasingly used to provide network connectivity and Internet access to previously under-served areas in the developing world. It is common for some of these deployments to be battery-powered due to a lack of electrical infrastructure in the targeted areas. Thus, the energy-efficiency of these networks gains additional importance. Topology Control (TC) has been previously reported to improve the energy-efficiency and network performance of wireless ad-hoc networks, including I-WMNs. However,simulation-based studies have been relied upon to reach these conclusions and the study of TC prototypes applicable to I-WMNs has largely been limited to design issues. Thus, the study of the efficacy of TC prototypes as a mechanism for improving energy-fficiency and network performance remains an open issue. The thesis addresses this knowledge gap by studying the dynamic, run-time behaviours and the network topologies created by two standards-compatible TC prototypes. This study provides unique insight into how the prototypes consume computational resources, maintain network connectivity, produce cumulative transceiver power savings and affect the workings of the routing protocol being employed. This study also documents the topology instability caused by transceiver power oscillations produced by the PlainTC prototype. A context-based solution to reduce transceiver power oscillations and the subsequent topology instability is proposed. This solution applies the Principal Component Analysis statistical method to historical network data in order to derive the weights associated with each of the identified context variables. A threshold value is defined that only permits a node to adjust its transceiver power output if the observed change in a node’s context exceeds the threshold. The threshold mechanism is incorporated into the PlainTC+ prototype and is shown to reduce topology instability whilst improving network performance when compared to PlainTC.The results obtained in this study suggest that I-WMN topologies formed by TC are able to closely match the performance of networks that do not employ TC. However, this study shows that TC negatively affects the energy efficiency of the network despite achieving cumulative transceiver power savings.
Baker, John Garrett. "Ecological Infrastructure: A Framework for Planning and Design: "Addressing Landscape Connectivity and Wildlife Resources for Interstate Highway Systems"". Thesis, Virginia Tech, 2005. http://hdl.handle.net/10919/32990.
Pełny tekst źródłaMaster of Landscape Architecture
Håkansson, Martin, i Tom Åkerström. "Business Ecosystem for Cellular Connectivity in Manufacturing Factories : - A case study to investigate how infrastructure developing telecom companies can establish a viable buisness ecosystem for cellular connectivity in manufacturing factories". Thesis, KTH, Skolan för industriell teknik och management (ITM), 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-264195.
Pełny tekst źródłaTillverkande fabriker har börjat inse att de fasta nätverkskablarna borde ersättas med trådlös kommunikation med högre kapacitet, för att deras fabriker ska vara anpassade till dagens förhållanden som krävs för toppmodern tillverkning. Cellulär uppkoppling har denna förmåga, men för att leverera tekniken till tillverkande fabriker borde en lämplig ekosystem-design etableras. Syftet med denna studie är att undersöka hur infrastrukturutvecklande telekomföretag kan arbeta för att etablera detta ekosystem för cellulär uppkoppling i tillverkande fabriker samt se till att vara konkurrenskraftiga över tid. Syftet uppnåddes genom en kvalitativ fallstudie bestående av 20 halvstrukturerade intervjuer som genomfördes på ett företag. Fallstudien kompletterades med en kvantitativ studie för att förstå statusen på nuvarande relationer i ekosystemet. Studiens resultat påvisar att: • Eftersom cellulär uppkoppling för fabriker är i ett tidigt skede av sin livscykel så är det av större betydelse att övertyga kunder om teknikens fördelar för att expandera marknaden snarare än att främja företagets egen produkt. • Vart eftersom tekniken mognar är det viktigt att ha en differentieringsstrategi, för att få en tillfredsställande marknadsandel. En konkurrensfördel uppnås inte garanterat genom komponenter och komplement via att företaget får ut en tidig fungerande produkt på marknaden. Den tidigt fungerande produkten bör dock ge upphov till en möjlighet att etablera viktiga relationer och erfarenheter över hela ekosystemet. • Affärsrelationer till alla parter i ekosystemet anses vara viktiga. Relationerna skiljer sig åt i styrka, eftersom de befinner sig i olika mognadsfaser och behöver olika mängder uppmärksamhet och resurser. Följaktligen måste en viss ansträngning sättas in i alla relationer, men förståelse av den optimala mängden uppmärksamhet och resurser för varje relation kan underlätta valet av lämpliga insatsnivåer.
Conficconi, Michele. "Analysis of time-sensitive networking technologies for the design of a unified communication infrastructure for Industrial Automation and IoT connectivity". Master's thesis, Alma Mater Studiorum - Università di Bologna, 2018.
Znajdź pełny tekst źródłaLawrence, Molly. "Experiential Graphic Design: Generating Urban Renewal by Improving Safety and Connectivity in Bicycle Pathways". Kent State University / OhioLINK, 2016. http://rave.ohiolink.edu/etdc/view?acc_num=kent1460734967.
Pełny tekst źródłaKsiążki na temat "Connectivity infrastructure"
Institute, Asian Development Bank, red. Infrastructure for Asian connectivity. Cheltenham, UK: Edward Elgar, 2012.
Znajdź pełny tekst źródłaZhang, Yunling. Development of China's transportation infrastructure and international connectivity. Jakarta]: Economic Research Institute for ASEAN and East Asia, 2010.
Znajdź pełny tekst źródłaPakistan) Pakistan-China-Iran : A Trident of Regional Connectivity (2017 Islāmābād. Pakistan-China-Iran : A Trident of Regional Connectivity, December 19, 2017: Seminor report. Islamabad: Institute of Strategic Studies, 2017.
Znajdź pełny tekst źródłaUniversiti Brunei Darussalam. Institute of Asian Studies, red. One Belt-One Road initiative and ASEAN connectivity: Synergy issues and potentialities. Gadong: Institute of Asian Studies, Universiti Brunei Darussalam, 2017.
Znajdź pełny tekst źródłaLi, Ping. "Yi dai yi lu" zhan lüe: Hu lian hu tong, gong tong fa zhan--neng yuan ji chu she shi jian she yu Ya Tai qu yu neng yuan shi chang yi ti hua = One belt, one road : connectivity and common development--energy infrastructure development and energy market integration in Asia-Pacific region. Beijing: Zhongguo she hui ke xue chu ban she, 2015.
Znajdź pełny tekst źródłaChettri, Mona, i Michael Eilenberg, red. Development Zones in Asian Borderlands. NL Amsterdam: Amsterdam University Press, 2021. http://dx.doi.org/10.5117/9789463726238.
Pełny tekst źródłaBhattacharyay, Biswa, Masahiro Kawai i Rajat Nag. Infrastructure for Asian Connectivity. Edward Elgar Publishing, 2012. http://dx.doi.org/10.4337/9781781003138.
Pełny tekst źródłaNag, Rajat M., Masahiro Kawai i Biswa Nath Bhattacharyay. Infrastructure for Asian Connectivity. Elgar Publishing Limited, Edward, 2014.
Znajdź pełny tekst źródłaEnhancing Connectivity through Transport Infrastructure. OECD, 2018. http://dx.doi.org/10.1787/9789264304505-en.
Pełny tekst źródłaStrusani, Davide, i Georges V. Houngbonon. Accelerating Digital Connectivity Through Infrastructure Sharing. International Finance Corporation, Washington, DC, 2020. http://dx.doi.org/10.1596/33616.
Pełny tekst źródłaCzęści książek na temat "Connectivity infrastructure"
Kararach, George. "Infrastructure and Connectivity". W Development Policy in Africa, 98–121. London: Palgrave Macmillan UK, 2014. http://dx.doi.org/10.1057/9781137360595_5.
Pełny tekst źródłaTianguo, Li. "Connectivity of infrastructure". W Routledge Handbook of the Belt and Road, 178–81. Abingdon, Oxon ; New York, NY : Routledge, 2019. | Series: Routledge international handbooks: Routledge, 2019. http://dx.doi.org/10.4324/9780429203039-32.
Pełny tekst źródłaLynn, Theo, Pierangelo Rosati, Edel Conway, Declan Curran, Grace Fox i Colm O’Gorman. "Infrastructure for Digital Connectivity". W Digital Towns, 109–32. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-91247-5_6.
Pełny tekst źródłaVagadia, Bharat. "Data Connectivity and Digital Infrastructure". W Future of Business and Finance, 21–63. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-54494-2_3.
Pełny tekst źródłaGong, Ding. "Thematic Session on Infrastructure Connectivity". W Routledge Handbook of the Belt and Road, 390–93. Abingdon, Oxon ; New York, NY : Routledge, 2019. | Series: Routledge international handbooks: Routledge, 2019. http://dx.doi.org/10.4324/9780429203039-74.
Pełny tekst źródłaRoy, Suvendu. "Transportation Infrastructure and Geomorphic Connectivity". W Disturbing Geomorphology by Transportation Infrastructure, 49–107. Cham: Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-37897-3_3.
Pełny tekst źródłaShrivastava, Shailesh Kumar, S. K. Mahendran i Amar Nath Pandey. "GIS Based Smart Energy Infrastructure Architecture and Revenue Administration". W Digital Connectivity – Social Impact, 237–46. Singapore: Springer Singapore, 2016. http://dx.doi.org/10.1007/978-981-10-3274-5_19.
Pełny tekst źródłaInnocenti, Giorgio M. "Cortical Connectivity: The Infrastructure of Thoughts". W Towards a Theory of Thinking, 337–46. Berlin, Heidelberg: Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-642-03129-8_22.
Pełny tekst źródłaZhongyuan, Zhang. "Case Studies of Infrastructure Connectivity Building". W The Routledge Handbook of the Belt and Road, 635–40. Wyd. 2. London: Routledge, 2022. http://dx.doi.org/10.4324/9781003286202-139.
Pełny tekst źródłaZhongyuan, Zhang. "Case studies of infrastructure connectivity building". W Routledge Handbook of the Belt and Road, 571–76. Abingdon, Oxon ; New York, NY : Routledge, 2019. | Series: Routledge international handbooks: Routledge, 2019. http://dx.doi.org/10.4324/9780429203039-112.
Pełny tekst źródłaStreszczenia konferencji na temat "Connectivity infrastructure"
Jude, Dylan, Bumseok Lee, Yong Jung, Jannik Petermann, Bharath Govindarajan i James Baeder. "Application of a Heterogeneous CFD Framework Towards Simulating Complete Rotorcraft Configurations". W Vertical Flight Society 74th Annual Forum & Technology Display, 1–18. The Vertical Flight Society, 2018. http://dx.doi.org/10.4050/f-0074-2018-12835.
Pełny tekst źródłaJung, Yong, Dylan Jude, Bharath Govindarajan i James Baeder. "Line-Based Unstructured/Structured Heterogenous CPU/GPU Framework for Complex Aerodynamic Flows". W Vertical Flight Society 73rd Annual Forum & Technology Display, 1–21. The Vertical Flight Society, 2017. http://dx.doi.org/10.4050/f-0073-2017-12007.
Pełny tekst źródłaSchmitt, Paul, i Elizabeth Belding. "Navigating connectivity in reduced infrastructure environments". W LIMITS '16: Workshop on Computing within Limits. New York, NY, USA: ACM, 2016. http://dx.doi.org/10.1145/2926676.2926691.
Pełny tekst źródłaHamouda, Ossama, Mohamed Kaaniche, Erling Matthiesen Moller, Jakob Gulddahl Rasmussen i Hans-Peter Schwefel. "Connectivity dynamics in vehicular freeway scenarios". W 2009 Global Information Infrastructure Symposium (GIIS). IEEE, 2009. http://dx.doi.org/10.1109/giis.2009.5307090.
Pełny tekst źródłaSukarev, Vidiin. "PRESERVE OF CULTURAL AND HISTORICAL HERITAGE DURING 1945-1989. A CONSTRUCTION OF PROSPECTIVE TOURIST RESOURCES". W TOURISM AND CONNECTIVITY 2020. University publishing house "Science and Economics", University of Economics - Varna, 2020. http://dx.doi.org/10.36997/tc2020.214.
Pełny tekst źródłaAleksandrova, Desislava. "MEDICAL FACILITIES AS A BASIS FOR THE DEVELOPMENT OF MEDICAL TOURISM". W TOURISM AND CONNECTIVITY 2020. University publishing house "Science and Economics", University of Economics - Varna, 2020. http://dx.doi.org/10.36997/tc2020.408.
Pełny tekst źródłaRafailova, Genka, i Antonio Hadzhikolev. "ASSESSMENT OF SMART EXPERIENCE OF TOURISTS AND LOCAL CITIZENS IN TOURIST DESTINATION". W TOURISM AND CONNECTIVITY 2020. University publishing house "Science and Economics", University of Economics - Varna, 2020. http://dx.doi.org/10.36997/tc2020.563.
Pełny tekst źródłaZhang, Xuewei, i Gang Zong. "Transport Infrastructure, Spatial connectivity and Inclusive Economic Growth". W the 2019 3rd International Conference. New York, New York, USA: ACM Press, 2019. http://dx.doi.org/10.1145/3355166.3355167.
Pełny tekst źródłaMohácsi, János. "KIFÜ nemzetközi együttműködései és projektjei". W Networkshop. HUNGARNET Egyesület, 2021. http://dx.doi.org/10.31915/nws.2021.22.
Pełny tekst źródłaCetinkaya, Egemen K., Mohammed J. F. Alenazi, Justin P. Rohrer i James P. G. Sterbenz. "Topology connectivity analysis of internet infrastructure using graph spectra". W 2012 IV International Congress on Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT 2012). IEEE, 2012. http://dx.doi.org/10.1109/icumt.2012.6459764.
Pełny tekst źródłaRaporty organizacyjne na temat "Connectivity infrastructure"
Coyner, Kelley, i Jason Bittner. Automated Vehicles and Infrastructure Enablers: Connectivity. 400 Commonwealth Drive, Warrendale, PA, United States: SAE International, czerwiec 2023. http://dx.doi.org/10.4271/epr2023013.
Pełny tekst źródłaPuig Gabarró, Pau. Digital Connectivity: The Infrastructure of the Future. Inter-American Development Bank, maj 2020. http://dx.doi.org/10.18235/0002352.
Pełny tekst źródłaBliss-Ketchum, Leslie. The Impact of Infrastructure on Habitat Connectivity for Wildlife. Portland State University Library, styczeń 2000. http://dx.doi.org/10.15760/etd.6708.
Pełny tekst źródłaOkala, Odiraa. The Power of Connectivity: Exploring the Role of Mobility Infrastructure. Orange Sparkle Ball, lipiec 2023. http://dx.doi.org/10.61152/dtui5808.
Pełny tekst źródłaHayashi, Tadateru, Sanchita Basu Das, Manbar Singh Khadka, Ikumo Isono, Souknilanh Keola, Kenmei Tsubota i Kazunobu Hayakawa. Economic Impact Analysis of Improved Connectivity in Nepal. Asian Development Bank, listopad 2020. http://dx.doi.org/10.22617/wps200312-2.
Pełny tekst źródłaHusar, Arndt, Yoonee Jeong i John Garrity. Cross-Sector Infrastructure Co-deployment: Closing Digital Connectivity Gaps through Collaboration and Sharing. Asian Development Bank, lipiec 2023. http://dx.doi.org/10.22617/wps230262-2.
Pełny tekst źródłaKunz, Johannes S., Carol Propper i Trong-Anh Trinh. The Impact of Internet Access on COVID-19 Spread in Indonesia. Asian Development Bank, kwiecień 2024. http://dx.doi.org/10.22617/wps240232-2.
Pełny tekst źródłaMeem, Fatma Zaman, i Wahid bin Ahsan. Urban Community Strategies: Enhancing Neighborhood Connectivity and Sustainability for Resilient Cities. Userhub, maj 2024. http://dx.doi.org/10.58947/wxkf-ktds.
Pełny tekst źródłaLambermont, Serge, i Niels De Boer. Unsettled Issues Concerning Automated Driving Services in the Smart City Infrastructure. SAE International, grudzień 2021. http://dx.doi.org/10.4271/epr2021030.
Pełny tekst źródłaGarcía Zaballos, Antonio, Pau Puig Gabarró i Enrique Iglesias Rodriguez. Digital Infrastructure in Trinidad and Tobago: Analysis, Challenges, and Action Plan. Inter-American Development Bank, luty 2022. http://dx.doi.org/10.18235/0003997.
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