Search results for "WIRELESS SENSOR NETWORKS"

showing 10 items of 159 documents

A novel secure aggregation scheme for wireless sensor networks using stateful public key cryptography

2015

International audience; Wireless sensor networks (WSNs) are nowadays considered as an important part of the Internet of Things (IoT). In these networks, data aggregation plays an essential role in energy preservation. However, WSNs are usually deployed in hostile and unattended environments (e.g. military applications) in which the confidentiality and integrity security services are widely desired. Recently, homomorphic encryptions have been applied to conceal sensitive information during aggregation such that algebraic operations are done directly on ciphertexts without decryption. The main benefit is that they offer the end-to-end data confidentiality and they do not require expensive com…

Computer Networks and Communicationsbusiness.industryComputer scienceWireless sensor networks WSNsSimple power analysisSecure data aggregationHomomorphic encryptionCryptographyEncryptionHomomorphic encryptionPublic-key cryptography[SPI]Engineering Sciences [physics]Key distribution in wireless sensor networksStateful firewallHardware and ArchitectureOverhead (computing)businessSecurity levelWireless sensor networkSoftwareComputer networkAd Hoc Networks
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Constraint Hubs Deployment for efficient Machine-Type-Communications

2018

Massive Internet of Things (mIoT) is an important use case of 5G. The main challenge for mIoT is the huge amount of uplink traffic as it dramatically overloads the radio access network (RAN). To mitigate this shortcoming, a new RAN technology has been suggested, where small cells are used for interconnecting different devices to the network. The use of small cells will alleviate congestion at the RAN, reduce the end-to-end (E2E) delay, and increase the link capacity for communications. In this paper, we devise three solutions for deploying and interconnecting small cells that would handle mIoT traffic. A realistic physical model is considered in these solutions. The physical model is based …

Computer scienceReliability (computer networking)Wireless communication050801 communication & media studies02 engineering and technology0508 media and communicationsSINR modelTelecommunications link5G mobile communication0202 electrical engineering electronic engineering information engineeringWirelessPath lossFadingElectrical and Electronic EngineeringDelaysRadio access networkConnectivityta213business.industryApplied Mathematics05 social sciences020206 networking & telecommunicationsRelay Node PlacementReliabilityWireless sensor networksComputer Science ApplicationsBackhaul (telecommunications)businessInterferenceWireless sensor network5GWireless Sensor NetworkComputer networkIEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS
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MAC Protocols for Wake-up Radio: Principles, Modeling and Performance Analysis

2018

[EN] In wake-up radio (WuR) enabled wireless sensor networks (WSNs), a node triggers a data communication at any time instant by sending a wake-up call (WuC) in an on-demand manner. Such wake-up operations eliminate idle listening and overhearing burden for energy consumption in duty-cycled WSNs. Although WuR exhibits its superiority for light traffic, it is inefficient to handle high traffic load in a network. This paper makes an effort towards improving the performance of WuR under diverse load conditions with a twofold contribution. We first propose three protocols that support variable traffic loads by enabling respectively clear channel assessment (CCA), backoff plus CCA, and adaptive …

Computer scienceWireless sensor networks (WSNs)02 engineering and technology01 natural sciencesWake-up radio (WuR)Medium access control (MAC) protocol0202 electrical engineering electronic engineering information engineeringElectrical and Electronic EngineeringLatency (engineering)QueueEnergy-efficient communicationbusiness.industryNode (networking)010401 analytical chemistryComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKS020206 networking & telecommunicationsEnergy consumptionINGENIERIA TELEMATICA0104 chemical sciencesComputer Science ApplicationsInternet of Things (IoT)Variable (computer science)Modeling and performance evaluationControl and Systems EngineeringbusinessWireless sensor networkInformation SystemsComputer networkEfficient energy useData transmission
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Wireless sensor network for Spectrum Cartography based on Kriging interpolation

2012

Dynamic spectrum access with Cognitive Radio (CR) network is a promising approach to increase the efficiency of spectrum usage. To allow the optimization of resource allocation and transmission adaptation techniques, each CR terminal needs to acquire awareness of the state of the time-frequency-location varying radio spectrum. In this paper we present a Spectrum Cartography (SC) approach where CR terminals are supported by a fixed wireless sensor network (WSN) to estimate and update the Power Spectral Density (PSD) over the area of interest. The wireless sensors collaborate to estimate the spatial distribution of the received power at a given frequency using either a centralized or a distri…

Computer sciencebusiness.industry05 social sciences050801 communication & media studies020206 networking & telecommunications02 engineering and technologyRadio spectrumKey distribution in wireless sensor networks0508 media and communicationsCognitive radioKriging0202 electrical engineering electronic engineering information engineeringResource allocationWirelessRadio resource managementFixed wirelessbusinessWireless sensor networkCartography
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Predictive models for energy saving in Wireless Sensor Networks

2011

ICT devices nowadays cannot disregard optimizations toward energy sustainability. Wireless Sensor Networks, in particular, are a representative class of a technology where special care must be given to energy saving, due to the typical scarcity and non-renewability of their energy sources, in order to enhance network lifetime. In our work we propose a novel approach that aims to adaptively control the sampling rate of wireless sensor nodes using prediction models, so that environmental phenomena can be consistently modeled while reducing the required amount of transmissions; the approach is tested on data available from a public dataset.

Computer sciencebusiness.industryReliability (computer networking)Distributed computingData modelingKey distribution in wireless sensor networksPredictive ModelWirelessEnergy sourcebusinessWireless sensor networkWireless Sensor NetworkEnergy (signal processing)Predictive modellingEnergy Saving.Computer network2011 IEEE International Symposium on a World of Wireless, Mobile and Multimedia Networks
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Implementation and Deployment Evaluation of the DMAMAC Protocol for Wireless Sensor Actuator Networks

2016

Abstract The increased application of wireless technologies including Wireless Sensor Actuator Networks (WSAN) in industry has given rise to a plethora of protocol designs. These designs target metrics ranging from energy efficiency to real-time constraints. Protocol design typically starts with a requirements specification, and continues with analytic and model-based simulation analysis. State-of- the-art network simulators provide extensive physical environment emulation, but still have limitations due to model abstractions. Deployment testing on actual hardware is therefore vital in order to validate implementability and usability in the real environment. The contribution of this article…

Computer sciencecomputer.internet_protocolTime division multiple accessWireless Routing Protocol02 engineering and technologyPacket lossWireless sensor networks and applications0202 electrical engineering electronic engineering information engineeringWirelessSuperframeNetwork architecture and designProtocol (object-oriented programming)Communication protocols.General Environmental ScienceEmulationbusiness.industry020206 networking & telecommunicationsKey distribution in wireless sensor networksEmbedded systemInternetwork protocolGeneral Earth and Planetary Sciences020201 artificial intelligence & image processingCommunications protocolbusinesscomputerReverse Address Resolution ProtocolEfficient energy useProcedia Computer Science
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Knowledge-based verification of concatenative programming patterns inspired by natural language for resource-constrained embedded devices

2020

We propose a methodology to verify applications developed following programming patterns inspired by natural language that interact with physical environments and run on resource-constrained interconnected devices. Natural language patterns allow for the reduction of intermediate abstraction layers to map physical domain concepts into executable code avoiding the recourse to ontologies, which would need to be shared, kept up to date, and synchronized across a set of devices. Moreover, the computational paradigm we use for effective distributed execution of symbolic code on resource-constrained devices encourages the adoption of such patterns. The methodology is supported by a rule-based sys…

Computer scienceinternet of thing02 engineering and technologycomputer.software_genrelcsh:Chemical technologyBiochemistryOracleArticleAnalytical ChemistryDomain (software engineering)Softwarewireless sensor network0202 electrical engineering electronic engineering information engineeringlcsh:TP1-1185Electrical and Electronic Engineeringdistributed programmingwireless sensor networksEmbedded systemInstrumentationAbstraction (linguistics)concatenative languagessymbolic programmingSettore ING-INF/05 - Sistemi Di Elaborazione Delle InformazioniSymbolic programmingProgramming languagebusiness.industryRuntime verification020206 networking & telecommunications020207 software engineeringcomputer.file_formatforthinternet of thingsAtomic and Molecular Physics and Opticsconcatenative languageProgramming patternsembedded systemsExecutablebusinesscomputerNatural language
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Optimization of flat area coverage under connectivity constraint in wireless sensor networks

2022

A wireless sensor network consists of a set of small autonomous units that interact via a network built by their communication modules. They observe their environment, capture information, then manage this information according to their computing and/or storage capacity. To effectively accomplish their task(s), they need to cover as much of the area of interest as possible. It is therefore essential to quantify the quality of their coverage. In this thesis, we therefore seek to best cover an area of interest, with a precise number of sensors. While taking into account the possible overlaps between sensors, we first deploy in a zone of regular dimensions and evaluate the exact coverage using…

ConnectivityGenetic AlgorithmConnectivitéAlgorithme génétiqueInternet des objets[INFO.INFO-TS] Computer Science [cs]/Signal and Image ProcessingRéseaux de capteurs sans filInternet Of ThingsCouverture de zoneWireless sensor networksArea Coverage
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Wireless Sensor Network Software Design Rules

2014

Bezvadu sensoru tīkli (BST) pēdējā desmitgadē sevi pierādījusi kā daudzsološa pieeja viedā planētas izpētē, piedāvājot risinājumus savvaļas dabas un dzīvnieku novērošanai, drošības sistēmu izstrādei, pacientu veselības stāvokļa kontrolei, industriālajai ražošanai un citām sfērām. Sensoru tīklu savstarpējai savietojamībai un programmatūras pārnesamībai trūkst vienotu standartu un vienotas metodoloģijas. Eksistē ievērojams skaits operētājsistēmu (OS), virtuālo mašīnu, vaicājumu valodu un citu rīku sensoru tīklu programmēšanai. Ir izstrādāta virkne dažādu komunikācijas protokolu. Tomēr praksē sensoru tīklu projektētāji un programmētāji joprojām saskaras ar problēmām jaunu platformu un lietotņu…

DatorzinātneComputer ScienceTelecommunicationsBezvadu sensoru tīkliTelekomunikācijawireless sensor networks
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Mobile Encounter Network - the missing data link

2008

In this paper, we discuss about the applicability of a short-range wireless communication scheme called Mobile Encounter Network (MEN). Encounters between devices communicating while moving allows ad-hoc -type data transfer to be performed. A background for the emerging of such networks is given. The essential properties of the MEN data transfer are specified. Based on this, the role of MEN as a data transfer medium is discussed. The conclusion is that such networking technique may provide additional value compared to the traditional wireless communication.

Delay-tolerant networkingKey distribution in wireless sensor networksAdaptive quality of service multi-hop routingWireless ad hoc networkWireless networkComputer sciencebusiness.industryDistributed computingMobile computingWireless WANMobile ad hoc networkbusinessComputer networkProceedings of the 12th international conference on Entertainment and media in the ubiquitous era
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