Search results for "LESS"

showing 10 items of 2452 documents

Do Current Domestic Gigabit Wireless Technologies Fulfill User Requirements for Ultra High Definition Videos?

2017

We present the results from a measurement-based performance evaluation of wireless networks based on IEEE 802.11n and IEEE 802.11ac standards in an indoor environment, with the aim to analyze their performance under high definition streaming video applications. We focus our study on analyzing the highest performance of these standards using off-the-shelf equipment, both with synthetic TCP and UDP traffic to measure the saturation throughput as well as high definition video streams. The measurements have been conducted in the student labs of our university and show good performance for streaming purposes in high definition and also ultra-high definition from a subjective video quality point …

IEEE 802.11u021103 operations researchWireless networkInter-Access Point Protocolbusiness.industryComputer scienceReal-time computing0211 other engineering and technologies02 engineering and technologyIEEE 802.11b-1999Gigabit0202 electrical engineering electronic engineering information engineeringWireless020201 artificial intelligence & image processingIEEE 802.11e-2005businessSubjective video qualityIEEE 802.11sComputer network2017 13th International Wireless Communications and Mobile Computing Conference (IWCMC)
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QoS Support for Time-Constrained Multimedia Communications in IEEE 802.11 WLANs: A Performance Evaluation

2005

During the past few years, we have been witnessing the massive deployment of IEEE 802.11 wireless LANs. Even though the widespread deployment of such wireless LANs, many studies are still underway aiming to design and develop simple yet effective QoS mechanisms for supporting time-constrained services over such platforms. In this paper, we first overview five different QoS mechanisms recently introduced in the literature as well as the upcoming IEEE 802.11e (EDCA) standard. We then carry out a comparative performance evaluation of all the QoS mechanisms. We focus our study on the effectiveness of the various QoS mechanisms for supporting time-constrained services.

IEEE 802.11uIEEE 802IEEE 802.11w-2009business.industryInter-Access Point ProtocolComputer scienceComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKSWireless Multimedia ExtensionsMobile QoSIEEE 802.11e-2005businessTelecommunicationsComputer networkIEEE 802.11r-20082005 Systems Communications (ICW'05, ICHSN'05, ICMCS'05, SENET'05)
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QoS Mechanisms for IEEE 802.11 Wireless LANs

2004

Currently the Internet provides users with access to information across the world using IP technology. Until now most access points to the Internet have been fixed stations at given locations, but with increasing sales of mobile devices, mobility has become a major trend. Therefore, the Internet is becoming more and more heterogeneous due to the recent explosion of wireless networks. The IEEE 802.11 wireless LAN (WLAN) is the most widely used WLAN standard nowadays. Currently the IEEE 802.11 standard specifies an over-the-air interface between wireless devices. However, QoS services over this technology are still being defined aiming to provide support to multiple applications. Thus, a larg…

IEEE 802.11uWi-Fi arrayComputer scienceInter-Access Point ProtocolMobile computinglaw.inventionIEEE 802.11lawWireless lanInternet ProtocolWirelessFixed wirelessIEEE 802.11sbusiness.industryWireless networkQuality of serviceComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKSWireless Multimedia ExtensionsTelecommunications networkWLAN Authentication and Privacy InfrastructureWireless site surveyThe InternetIEEE 802.11e-2005businessTelecommunicationsMobile deviceNeuRFonComputer network
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Time synchronization enhancements in wireless networks with ultra wide band communications

2022

The emergence of low cost Ultra Wide Band (UWB) transceivers has enabled the implementation of Wireless Sensor Networks (WSN) based on this communication technology. These networks are composed of distributed autonomous low cost nodes (also known as motes) with their own processing unit, memory and communications. Usually these nodes are power-limited and due to the poor performance and quality of their clocks, time synchronization is in the order of milliseconds and in some specific scenarios till microseconds. The integration of commercial UWB transceivers in these nodes can improve the synchronization accuracy. In particular, we focus on WSN nodes based on off-the-shelf commercial produc…

IEEE 802.15.4Computer Networks and Communicationslinear regressionultra wide bandUNESCO::CIENCIAS TECNOLÓGICAStime synchronizationwireless sensor networksComputer Communications
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Real-Life Experiments based on IQRF IoT Testbed: From Sensors to Cloud

2018

Master's thesis Information- and communication technology IKT590 - University of Agder 2018 Internet of things (IoT) is the next generation internet technology which connects devices and objects intelligently to control data collected by diverse types of sensors, radio frequency identification and other physical objects. To address the challenges in IoT such as integrating artificial intelligent techniques with IoT concept, developing green IoT technologies and combining IoT and cloud computing, various platforms which support reliable and low power wireless connectivity are required. IQRF is a recently developed platform for wireless connectivity. It provides low power, low speed, reliable…

IEEE 802.15.4IQRFIoTIKT590Light Dependent ResistorIQRF CloudGSM GatewayVDP::Teknologi: 500::Informasjons- og kommunikasjonsteknologi: 550Wireless Sensor Network
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Capacity and Energy-Consumption Optimization for the Cluster-Tree Topology in IEEE 802.15.4

2011

International audience; 802.15.4 proposes to use a cluster-tree hierar- chy to organize the transmissions in Wireless Sensor Networks. In this letter, we propose a framework to analyze formally the capacity and the energy consumption of this structure. We derive a Mixed Integer Linear Programming (MILP) formulation to obtain a topology compliant with the standard. This formulation provides the optimal solution for the network capacity: this con- stitutes an upper bound for any distributed algorithms permitting to construct a cluster-tree. This framework can also be used to evaluate the capacity and to compare quantitatively different cluster-tree algorithms.

IEEE 802.15.4Mathematical optimizationLinear programming[INFO.INFO-RO] Computer Science [cs]/Operations Research [cs.RO]Computer scienceDistributed computing[ INFO.INFO-NI ] Computer Science [cs]/Networking and Internet Architecture [cs.NI]Topology (electrical circuits)02 engineering and technologyTopologyNetwork topologyChannel capacity[INFO.INFO-NI]Computer Science [cs]/Networking and Internet Architecture [cs.NI]0202 electrical engineering electronic engineering information engineeringElectrical and Electronic EngineeringInteger programmingIEEE 802.15[ INFO.INFO-RO ] Computer Science [cs]/Operations Research [cs.RO]MILP[INFO.INFO-NI] Computer Science [cs]/Networking and Internet Architecture [cs.NI]capacity020206 networking & telecommunicationsEnergy consumption[INFO.INFO-RO]Computer Science [cs]/Operations Research [cs.RO]020202 computer hardware & architectureComputer Science ApplicationsDistributed algorithmModeling and Simulationcluster-treeWireless sensor network
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On-body and off-body transmit power control in IEEE 802.15.6 scheduled access networks

2014

Wireless Body Area Networks (WBANs) have received much attention due to the possibility to be used in healthcare applications. For these applications, energy saving is a critical issue, as in many cases, batteries cannot be easily replaced. A transmit power control scheme, able to adapt to the variations of the wireless body channel, will allow consistent energy saving and longer battery life. In this paper we propose a transmit power control scheme suitable for IEEE 802.15.6 narrowband scheduled access networks, in which the transmission power is modulated frame by frame according to a run-time estimation of the channel propagation conditions. A simple and effective line search algorithm i…

IEEE 802.15.6Access networkAdaptive Transmit Power ControlSettore ING-INF/03 - TelecomunicazioniInter-Access Point Protocolbusiness.industryComputer scienceTransmitter power outputKey distribution in wireless sensor networksNarrowbandComputer Science::Networking and Internet ArchitectureElectronic engineeringWirelessWBANRadio resource managementWireless Body Area NetworkbusinessWireless sensor networkFade marginIEEE 802.15ATPCComputer Science::Information TheoryPower controlComputer networkCommunication channel2014 IEEE 25th Annual International Symposium on Personal, Indoor, and Mobile Radio Communication (PIMRC)
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Statistical learning and multiple linear regression model for network selection using MIH

2014

Award of Appreciation; International audience; A key requirement to provide seamless mobility and guaranteeing Quality of Service in heterogeneous environment is to select the best destination network during handover. In this paper, we propose a new schema for network selection based on Multiple Linear Regression Model (MLRM). A horough investigation, on a huge live data collected from GPRS/UMTS networks led to identify the Key Performance Indicators (KPIs) that play the most important role in the handover process. These KPIs are: Received Signal Code Power (RSCP), received energy per chip (Ec/No) and Available Bandwidth (ABW) of the destination network. To extract a handover model from col…

IEEE 802.21multiple linear regressionseamless handover[INFO.INFO-NI] Computer Science [cs]/Networking and Internet Architecture [cs.NI]Computer sciencebusiness.industry[ INFO.INFO-NI ] Computer Science [cs]/Networking and Internet Architecture [cs.NI]Quality of serviceComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKS020206 networking & telecommunications02 engineering and technologyPredictive analyticsMedia-independent handoverstatistical learning[INFO.INFO-NI]Computer Science [cs]/Networking and Internet Architecture [cs.NI]IEEE 802.21Handover020204 information systems0202 electrical engineering electronic engineering information engineeringReceived signal code powerPerformance indicatorGeneral Packet Radio ServicebusinessComputer networkThe Third International Conference on e-Technologies and Networks for Development (ICeND2014)
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Design of energy efficient MAC protocols in wireless sensor networks

2014

Masteroppgave i Informasjons- og kommunikasjonsteknologi IKT590 Universitetet i Agder 2014 Wireless sensor networks (WSNs) have been used in variety of applications such as in military and defense, process control industry and health monitoring applications. In WSNs, sensors are in small size with limited battery capacity and idle listening is a crucial problem which consumes more energy. Duty cycling (DC) is a technique which is used in many medium access control (MAC) protocols to reduce idle listening. In this thesis, we propose an asynchronous DC protocol, namely energy balancing asynchronous cooperative transmission medium access control (EB-ACT-MAC), which balances the remaining energ…

IKT590ComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKSVDP::Technology: 500::Information and communication technology: 550Wireless sensor network ; MAC protocol ; duty cycling ; energy balancing ; cooperative transmission
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Modeling and verifying the OLSR protocol using Uppaal

2014

Masteroppgave i Informasjons- og kommunikasjonsteknologi IKT590 Universitetet i Agder 2014 Wireless Mesh Networks (WMNs) are a popular technology due to their exibility andself-organizing nature that provide support for broadband communication. They areused in a wide range of application areas, such as public transportation, tunnels, realtime racing car telemetry and emergency response communication. Route _nding andmaintenance, two important factors determining the performance of such networks,are provided using routing algorithms. The Optimized Link State Routing (OLSR)protocol is an example of such algorithms which is used in this study.One issue about this protocol is that its speci_cat…

IKT590Wireless Mesh Networks (WMNs) ;ComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKSVDP::Technology: 500::Information and communication technology: 550
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