Добірка наукової літератури з теми "Wi-Fi (IEEE 802.11)"

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Статті в журналах з теми "Wi-Fi (IEEE 802.11)"

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Sridar, Tharunika. "Investigating the Potential of Wi-Fi-6 (802.11ax) for URLCC." Journal of Artificial Intelligence & Cloud Computing 2, no. 3 (2023): 1–4. http://dx.doi.org/10.47363/jaicc/2023(2)e110.

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Анотація:
URLLC, Ultra-Reliable and Low-Latency Communications, is the most customer-beneficial 5G feature. These technologies will be used in urgent communication, such as mobility coordination and remote robot control. Many networking protocols now use time synchronization to improve communication efficiency, adaptability, and dependability. Automation systems, real-time healthcare, autonomous driving, and networked arts-based professional film use physical networks. Applications are one of the most amazing and unimaginable capabilities of high-reliable communication. IEEE 802. TSN technology and stan
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Irwansyah, Irwansyah, and Helda Yudiastuti. "REDESIGN DAN PEMETAAN JARINGAN WLAN BERDASARKAN CAKUPAN AREA DI KANTOR DINAS PENDIDIKAN KAYUAGUNG." Jurnal Ilmiah Matrik 21, no. 3 (2019): 194–203. http://dx.doi.org/10.33557/jurnalmatrik.v21i3.722.

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Анотація:
Abstract : Wi-Fi technologies are widely used generally using IEEE 802 wireless standardization. 11a/b/g which works at a frequency of 2.4 GHz. These devices are found in almost all places, such as in offices – Government offices, private companies, entertainment venues, and educational venues. Currently the need for Wi-Fi (wireless fidelity) is very much needed, because nowadays many gadget devices that have been equipped with Wi-Fi so that with Wi-Fi Everyone can access the Internet everywhere. Based on the results of a field survey conducted on the WLAN network in the office of the Dinas Pe
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Gupta, Kirti, and Georgios Effraimidis. "An Empirical Examination of Impact." Antitrust Bulletin 64, no. 2 (2019): 151–71. http://dx.doi.org/10.1177/0003603x19844630.

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Анотація:
In February 2015, the Institute of Electrical and Electronics Engineers-Standards Association (IEEE-SA)—one of the largest standards development organizations (SDOs)—adopted highly controversial changes to its intellectual property rights (IPR) policy. It introduced a specific definition of fair, reasonable and nondiscriminatory (FRAND) licensing terms. The aim of this article is to explore how the new patent policy has impacted different aspects of standards development within IEEE. Our analysis focuses on the IEEE 802 LAN/MAN Standards Committee (IEEE 802 LMSC), whose Working Groups have bee
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4

Fajriati, Nur, Efri Sandi, and Baso Maruddani. "ANALISIS KINERJA WI-FI CHANNEL 1, 3, 6 DAN 11 DENGAN MENGGUNAKAN BANDWIDTH 20 MHz DAN 40 MHz PADA FREKUENSI WI-FI 2.4 GHz SPESIFIKASI 802.11n." JURNAL PENDIDIKAN VOKASIONAL TEKNIK ELEKTRONIKA (JVoTE) 3, no. 2 (2020): 67–72. http://dx.doi.org/10.21009/jvote.v3i2.20056.

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Анотація:
Abstrak. Penelitian ini bertujuan untuk menganalisis kinerja Wi-Fi channel 1, 3, 6, dan 11 dalam bandwidth (channel width) 20 MHz dan 40 MHz yang sesuai dengan protokol IEEE 802.11n. Penelitian ini menggunakan metode penelitian eksperimen dengan desain eksperimen Pre-Experimental. Pengukuran yang dilakukan dengan melihat parameter Quality of Service yaitu delay, throughput dan packet loss dengan mempertimbangkan hasil dari pengamatan Spurious Emission. Dengan melakukan transmisi data menggunakan Iperf3 dan perintah Ping (CMD). Berdasarkan hasil akhir dari analisis dapat disimpulkan bahwa pada
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Gimenez-Guzman, Jose Manuel, Ivan Marsa-Maestre, David Orden, Susel Fernandez, and Marino Tejedor-Romero. "On the Benefits of Channel Bonding in Dense, Decentralized Wi-Fi 4 Networks." Wireless Communications and Mobile Computing 2022 (February 10, 2022): 1–11. http://dx.doi.org/10.1155/2022/8497585.

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Анотація:
Channel bonding is a technique first defined in the IEEE 802.11n standard to increase the throughput in wireless networks by means of using wider channels. In IEEE 802.11n (nowadays also known as Wi-Fi 4), it is possible to use 40 MHz channels instead of the classical 20 MHz channels. Although using channel bonding can increase the throughput, the classic 802.11 setting only allows for two orthogonal channels in the 2.4 GHz frequency band, which is not enough for proper channel assignment in dense settings. For that reason, it is commonly accepted that channel bonding is not suitable for this
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Kumar, Praveen, Manohara Pai MM, Pradeep Kumar, Tanweer Ali, M. Gulam Nabi Alsath, and Vidhyashree Suresh. "Characteristics Mode Analysis-Inspired Compact UWB Antenna with WLAN and X-Band Notch Features for Wireless Applications." Journal of Sensor and Actuator Networks 12, no. 3 (2023): 37. http://dx.doi.org/10.3390/jsan12030037.

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Анотація:
A compact circular structured monopole antenna for ultrawideband (UWB) and UWB dual-band notch applications is designed and fabricated on an FR4 substrate. The UWB antenna has a hybrid configuration of the circle and three ellipses as the radiating plane and less than a quarter-lowered ground plane. The overall dimensions of the projected antennas are 16 × 11 × 1.6 mm3, having a −10 dB impedance bandwidth of 113% (3.7–13.3 GHz). Further, two frequency band notches were created using two inverted U-shaped slots on the radiator. These slots notch the frequency band from 5–5.6 GHz and 7.3–8.3 GHz
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Timmaiah, P. Naga, K. Meenendranath Reddy, D. Umendra, S. Sneha Madhuri, and V. Srikanth. "An Implementation of Iot Based Electrical Device Surveillance and Control using Sensor System." Journal of Energy Engineering and Thermodynamics, no. 25 (September 30, 2022): 33–41. http://dx.doi.org/10.55529/jeet.25.33.41.

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Анотація:
IoT (Internet of Things) is expanding its market share and opening up new avenues for innovation with each improvement in Internet speed & Bandwidth. According to data compiled by the Prevention Council while the Environmental Protection Association, the average mortality toll from fire is 10.5% and from petrol is 11%. This research endeavour addresses the issue of electrical appliance safety. IoT-based control system with gas, fire and temperature sensors; lcd(16x2) displays system status and sensor data. In this setup, loads are managed mechanically based on sensor readings. The Internet
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Lamy, Yann, Florian Dupont, Guillaume Rodriguez, et al. "(Invited) Lithium-Based Components Integrated on Silicon: Disruptive, Promising and Credible Solutions for 5G & Beyond." ECS Meeting Abstracts MA2022-01, no. 29 (2022): 1286. http://dx.doi.org/10.1149/ma2022-01291286mtgabs.

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Анотація:
Following a trend similar to Moore’s low which prevailed for decades for active circuits, RF integrated passive components have reinvented themselves over the years in order to sustain continuous performance and size requirements. Their roadmap is still unrolling, thanks to a wide variety of new materials integration: high-k dielectrics for capacitors[1] ,[2] , magnetic material for inductors [3], aluminium nitride[4] (now scandium doped) for RF filters, or more recently phase-change materials for RF switches[5]. In the last few years, RF integrated passives built upon Lithium-based materials
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Lemeshko, A. V., А. О. Makarenko, N. V. Rudenko, O. M. Tkachenko та S. V. Savchuk. "Development of an advanced algorithm for sensitivity control of the service area of the IEEE 802.11ах Standards". Connectivity 146, № 4 (2020). http://dx.doi.org/10.31673/2412-9070.2020.045056.

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Анотація:
The article examines the technical features of the new 802.11ax standard, which for convenience has been assigned the abbreviation Wi-Fi 6. These include: support for 2.4 and 5 GHz bands; OFDMA support; joint work of MU-MIMO and OFDMA; Target Wake Time function. OFDM technology divides data channels into multiple subcarriers, providing higher connection and network reliability. In 802.11ax, the number of subcarriers quadruples due to the long OFDM guard interval. This will help increase the network coverage, and, accordingly, the speed of Wi-Fi 6 by 11%. With channel widths up to 160 MHz, 802.
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Kirti, Vyas, and K. Singhal P. "Bandwidth Enhancement in CPW Fed Compact Rectangular Patch Antenna." March 3, 2014. https://doi.org/10.5281/zenodo.1091758.

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Анотація:
This paper presents a novel CPW fed patch antenna supporting a wide band from 2.7 GHz &ndash; 6.5 GHz. The antenna is compact with size 32 x 30 x 1.6mm<sup>3</sup>, built over FR4-epoxy substrate (&epsilon;<sub>r</sub>=4.4). Bandwidth enhancement has been achieved by using the concept of modified ground structure (MGS). For this purpose structural design has been optimized by parametric simulations in CST MWS. The proposed antenna can perform well in variety of wireless communication services including 5.15 GHz- 5.35 GHz and 5.725 GHz- 5.825 GHz WLAN IEEE 802.11 g/a, 5.2/ 5.5/ 5.8 GHz Wi-Fi, 3
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Дисертації з теми "Wi-Fi (IEEE 802.11)"

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Sawma, Gilbert. "Un système de pilotage autonomique pour la distribution de charge dans les réseaux sans fil Wi-Fi." Paris 6, 2009. http://www.theses.fr/2009PA066755.

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Анотація:
Cette thèse aborde le sujet de gestion des grands réseaux Wi-Fi IEEE 802. 11, dits réseaux municipaux. Son objectif est de maîtriser la répartition de charge auprès de la multitude de points d'accès mis à disposition des utilisateurs fixes ou mobiles. Elle propose un système de pilotage avec sur le volet architectural la conception d'un système autonomique et sur le plan algorithmique le détail de nos protocoles pour la distribution de charge dans les réseaux 802. 11. Elle cible en particulier la gestion du service voix sur IP dans les WLAN (VoWi-Fi). Elle présente dans ce cadre l'architecture
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2

Zhao, Zhipeng. "Application des codes relais au Wi-Fi en vue de la standardisation IEEE 802. 11s." Paris, Télécom ParisTech, 2010. http://pastel.archives-ouvertes.fr/pastel-00559723.

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Анотація:
Ce mémoire de thèse porte sur la conception, la validation et l'application du codage canal en mode relais dans le cadre de système WiFI. A cette fin, le modèle de transmission coopératif est introduit dans le chapitre 1 et le chapitre 2 se consacre à l'étude du décodeur MIMO intégrré dans le système coopératif. Le chapitre 3 se consacre à l'étude du protocole baptisé Relais-SISO et sa mise en œuvre dans le standard IEEE802. 11a à 5 GHz. De nouvelles structures de trame sont proposées en ajoutant des préambules destinée à être exploités par le mode coopératif. Des résultatss de simulation démo
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Romero, Grecia. "Identification of the impact mechanisms of the electromagnetic interferences on the Wi-Fi communications." Thesis, Lille 1, 2017. http://www.theses.fr/2017LIL10151/document.

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Анотація:
Les communications sans fil sont essentielles pour les nouveaux systèmes des transports. Ainsi, ces communications sans fil doivent être capables d'opérer sans interruption quelque soit l'environnement électromagnétique (EM) dans lequel elles se trouvent. Pour cette raison, nous nous étudions comment certains environnements EM affectent les systèmes de communication. Dans cette thèse, nous nous sommes intéressés aux trains à grande vitesse. Dans ce secteur, on peut trouver des interférences EM intentionnelles (IEMI) et des interférences EM non intentionnelles (EMI). Nous avons considéré comme
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Jamil, Imad. "Improving spatial reuse in future dense high efficiency Wireless Local Area Networks." Thesis, Rennes, INSA, 2015. http://www.theses.fr/2015ISAR0033/document.

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Анотація:
Malgré leur réussite remarquable, les premières versions des normes de réseaux locaux sans fil IEEE 802.11, IEEE 802. 11 a/b/g WLAN, sont caractérisées par une efficacité spectrale faible qui est devenue insuffisante pour satisfaire la croissance explosive de la demande de capacité et de couverture. Grâce aux progrès considérables dans le domaine des communications sans fil et l'utilisation de la bande de fréquence autour de 5 gigahertz le standard IEEE 802.11n et plus récemment 1'IEEE 802.11ac ont amélioré les débits offerts par la couche physique. Cela été possible grâce principalement à l'i
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Книги з теми "Wi-Fi (IEEE 802.11)"

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Reynolds, Janice. Going Wi-Fi: Networks Untethered with 802. 11 Wireless Technology. Taylor & Francis Group, 2017.

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Reynolds, Janice. Going Wi-Fi: Networks Untethered with 802. 11 Wireless Technology. Taylor & Francis Group, 2003.

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Reynolds, Janice. Going Wi-Fi: Networks Untethered with 802. 11 Wireless Technology. Taylor & Francis Group, 2003.

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4

Reynolds, Janice. Going Wi-Fi: Networks Untethered with 802. 11 Wireless Technology. Elsevier Science & Technology Books, 2003.

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Тези доповідей конференцій з теми "Wi-Fi (IEEE 802.11)"

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Al-banna, Ayham, Tae Lee, Joseph LoCicero, and Donald Ucci. "11 Mbps CCK - Modulated 802.11b Wi-Fi: Spectral Signature and Interference." In 2006 IEEE International Conference on Electro/Information Technology. IEEE, 2006. http://dx.doi.org/10.1109/eit.2006.252180.

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