Search results for "Tribute"

showing 10 items of 1455 documents

Steady state γ-ray radiation effects on Brillouin fiber sensors

2015

International audience; Brillouin optical time-domain analysis (BOTDA) sensors offer remarkable advantages for the surveillance of the planned French deep geological radioactive wastes repository, called Cigéo1,2. In this work we study the performances of Brillouin distributed sensors in harsh environment. We evaluate the radiation tolerance of different sensor classes and their responses evolution during γ-ray exposition with 1kGy/h dose rate (to reach ~0.2MGy) and after 1, 3, 6 and 10 MGy accumulated doses. Measurements on strained Ge-doped SMF are reported to highlight the variation on Brillouin scattering proprieties, both intrinsic frequency position of Brillouin shift and its dependen…

Optical fiberStrain sensorOptical fiberMaterials scienceCondensed Matter PhysicRadiation7. Clean energyDistributed temperature sensorlaw.invention[SPI]Engineering Sciences [physics]OpticslawBrillouin scatteringFiberElectrical and Electronic EngineeringSteady statebusiness.industryScatteringElectronic Optical and Magnetic MaterialComputer Science Applications1707 Computer Vision and Pattern RecognitionApplied MathematicBrillouin zoneGamma radiationFiber optic sensorOptoelectronicsbusinessBrillouin scatteringBotdaRadiactive wasteSPIE Proceedings
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A Generalized Framework for Optimal Sizing of Distributed Energy Resources in Micro-Grids Using an Indicator-Based Swarm Approach

2014

In this paper, a generalized double-shell framework for the optimal design of systems managed optimally according to different criteria is developed. Optimal design is traditionally carried out by means of minimum capital and management cost formulations and does not typically consider optimized operation. In this paper, the optimized multiobjective management is explicitly considered into the design formulation. The quality of each design solution is indeed defined by the evaluation of operational costs and capital costs. Besides, the assessment of the operational costs term is deduced by means of the solution of a multiobjective optimization problem. Each design solution is evaluated usin…

Optimal designMathematical optimizationEngineeringNSGA-IIbusiness.industrymicrogridsPareto principleGlow-worm optimizationindicator based evolutionary algorithmMulti-objective optimizationComputer Science ApplicationsSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaSettore ING-IND/31 - ElettrotecnicamicrogridPower system simulationControl and Systems EngineeringDistributed generationmicrogrids;indicator based evolutionary algorithm;Glow-worm optimization;planning;NSGA-IICapital costMicrogridplanningElectrical and Electronic EngineeringbusinessActivity-based costingInformation SystemsIEEE Transactions on Industrial Informatics
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User bandwidth usage-driven HNN neuron excitation method for maximum resource utilization within packet-switched communication networks

2006

Mobile and wireless systems beyond 3G are being designed under the user-centric paradigm. Dynamic resource allocation (DRA) is a topic on intensive research to address efficiently such paradigm. Hopfield neural networks (HNN) have proved useful in the past to solve this kind of complex optimization problems. Recently, various approaches have been proposed to realize HNN-based user-centric DRA. However, the initial algorithms suffer from severe instability problems impacting the overall performance. This letter analyses the source of the existing limitations and proposes an enhanced formulation, ensuring maximum resource utilization while optimizing the convergence of the neural network. The…

Optimization problemArtificial neural networkWireless networkbusiness.industryComputer scienceDistributed computingTelecommunications networkComputer Science ApplicationsPacket switchingBandwidth allocationModeling and SimulationBandwidth (computing)Resource allocationResource managementElectrical and Electronic EngineeringbusinessComputer networkIEEE Communications Letters
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Energy-Efficient Resource Allocation and User Scheduling for Collaborative Mobile Clouds With Hybrid Receivers

2016

In this paper, we study the resource allocation and user scheduling algorithm for minimizing the energy cost of data transmission in the context of OFDMA collaborative mobile cloud (CMC) with simultaneous wireless information and power transfer (SWIPT) receivers. The CMC, which consists of several collaborating MTs offers one potential solution for downlink con- tent distribution and for the energy consumption reduction at the terminal side. Meanwhile, as RF signal can carry both informa- tion and energy simultaneously, the induced SWIPT has gained much attention for energy efficiency design of mobile nodes. Previous work on the design of CMC system mainly focused on the cloud formulation o…

Optimization problemComputer Networks and CommunicationsComputer scienceDistributed computingresource allocationAerospace EngineeringCloud computing02 engineering and technology7. Clean energyScheduling (computing)Frequency allocation0203 mechanical engineeringTelecommunications link0202 electrical engineering electronic engineering information engineeringWirelessElectrical and Electronic Engineeringta113collaborative mobile cloudscontent distributionbusiness.industryuser scheduling020302 automobile design & engineering020206 networking & telecommunicationsEnergy consumptionpower allocationuser cooperationgreen communicationsAutomotive EngineeringConvex optimizationResource allocationsubchannel allocationbusinessEfficient energy useIEEE Transactions on Vehicular Technology
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Distributed Resource Allocation for Energy Efficiency in OFDMA Multicell Networks with Wireless Power Transfer

2019

In this paper, an energy-efficient resource allocation problem is investigated for the wireless power transfer (WPT)-enabled OFDMA multicell networks. In the considered system, multiple base stations (BSs) with a large number of antennas are responsible to provide WPT in the downlink, and the users can recycle and utilize the received energy for uplink data transmission. The role of BS is to execute WPT; thus, there are no data transmissions in the downlink. A time-division protocol is considered to divide the time of downlink WPT and uplink wireless information transfer into separate time slots. With the objective to improve the energy efficiency, we propose the time, subcarrier, and power…

Optimization problemComputer Networks and CommunicationsComputer sciencesubcarrier allocationenergiatehokkuusDistributed computingwireless power transfer02 engineering and technologyData_CODINGANDINFORMATIONTHEORYSubcarrierNonlinear programmingantenna selectionBase stationTelecommunications link0202 electrical engineering electronic engineering information engineeringComputer Science::Networking and Internet ArchitectureWirelessElectrical and Electronic Engineeringvoimansiirtoenergy efficiencyComputer Science::Information Theoryta213business.industryComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKStime allocation020206 networking & telecommunicationspower allocationChannel state informationResource allocationbusinesslangattomat verkotEfficient energy use
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Energy Efficient Sink Placement in Wireless Sensor Networks by Brain Storm Optimization Algorithm

2018

Wireless sensor networks represent one of the most promising technologies whose use has significantly increased in the past years. They are used in various applications such as health care monitoring, surveillance and monitoring in agriculture, industrial monitoring, habitat and underwater monitoring, etc. Deployment of the wireless sensor networks introduces number of hard optimization problems. Placement of the elements such as sensors, gateways, sinks and base stations, depend on different conditions and constraints such as signal propagation, distance, energy preservation, reliability. In this paper, we propose a method based on brain storm optimization algorithm for placing multiple si…

Optimization problemComputer scienceDistributed computingReliability (computer networking)Particle swarm optimization020206 networking & telecommunications02 engineering and technologySwarm intelligenceBase stationComputer Science::Networking and Internet Architecture0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingWireless sensor networkEnergy (signal processing)Efficient energy use2018 14th International Wireless Communications & Mobile Computing Conference (IWCMC)
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Interactive multiobjective optimization system WWW-NIMBUS on the Internet

2000

Abstract NIMBUS is a multiobjective optimization method capable of solving nondifferentiable and nonconvex problems. We describe the NIMBUS algorithm and its implementation WWW-NIMBUS. To our knowledge WWW-NIMBUS is the first interactive multiobjective optimization system on the Internet. The main principles of its implementation are centralized computing and a distributed interface. Typically, the delivery and update of any software is problematic. Limited computer capacity may also be a problem. Via the Internet, there is only one version of the software to be updated and any client computer has the capabilities of a server computer. Further, the World-Wide Web (WWW) provides a graphical …

Optimization problemGeneral Computer ScienceComputer sciencebusiness.industryInterface (computing)Distributed computingClientManagement Science and Operations ResearchMulti-objective optimizationSoftwareModeling and SimulationServerThe InternetbusinessGraphical user interfaceComputers & Operations Research
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A Monitoring and Management System for Energy Storage Integration in Smart Grids

2019

The integration of distributed storage systems (DSSs) at users and prosumers level can significantly contribute to energy efficiency and increase profits from renewable energy exploitation, thanks to suitable scheduling of charging and discharging periods. On the other hand, to preserve network stability and secure operation, Distribution Systems Operators (DSOs) are interested in DSSs control and cooperation with the grid. In this framework this work proposes a simple monitoring and management system for DSSs scheduling and its integration in a distributed measurement and control system architecture for smart grids. In the paper the proposed algorithm is tested on a simple case study at ho…

OptimizationEnergy storageSchedulingbusiness.industry020209 energyDistributed computing020208 electrical & electronic engineeringPSO02 engineering and technologyGridEnergy storageScheduling (computing)Distributed measurement systemSmart gridDistributed generationDistributed data storeManagement system0202 electrical engineering electronic engineering information engineeringMedicineDemande side responseDistributed generationbusinessSizingSettore ING-INF/07 - Misure Elettriche E ElettronicheEfficient energy use2019 IEEE International Instrumentation and Measurement Technology Conference (I2MTC)
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AN OBJECT ORIENTED MODEL FOR SCHEDULING IN AGILE MANUFACTURING

2002

Agility represents a key factor in industry to handle the continuous market changes. Companies must re-organize their activities to be agile and competitive in such a dynamic environment. In particular, production planning and control tools are very important to optimize the manufacturing process responsiveness to sudden changes in customer demand. In this paper, an attempt has been made to develop an object-oriented software architecture that allows the optimal line organization to be determined once a set of parts to be produced has been ordered. An optimization module represented by a simulated annealing algorithm has been interfaced with an object oriented architecture to build up a fr…

OptimizationEngineeringSchedulingbusiness.industryStrategy and ManagementDistributed computingReal-time computingScheduling (production processes)ReconfigurabilityAgile manufacturingIndustrial and Manufacturing EngineeringComputer Science ApplicationsObject-oriented designScheduling; Objected oriented design; OptimizationObjected oriented designProduction planningSimulated annealingbusinessSoftware architectureAgile software developmentJournal of Advanced Manufacturing Systems
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Multi-party metering: An architecture for privacy-preserving profiling schemes

2013

Several privacy concerns about the massive deploy- ment of smart meters have been arisen recently. Namely, it has been shown that the fine-grained temporal traces generated by these meters can be correlated with different users behaviors. A new architecture, called multi-party metering, for enabling privacy-preserving analysis of high-frequency metering data without requiring additional complexity at the smart meter side is here proposed. The idea is to allow multiple entities to get a share of the high-frequency metering data rather than the real data, where this share does not reveal any information about the real data. By aggregating the shares provided by different users and publishing …

OptimizationInformation privacyEngineeringtatistical analysiSmart meterDistributed computingpattern clusteringC.2 COMPUTER-COMMUNICATION NETWORKSSmart gridelectricity supply industryComputer securitycomputer.software_genreCOMPUTER-COMMUNICATION NETWORKSElectricityClustering algorithmProfiling (information science)Metering modemart meterIndexeArchitectureCluster analysisgas industrydata privacybusiness.industrySettore ING-INF/03 - TelecomunicazioniComplexity theoryreal gas consumption dataVectorsA sharehigh-frequency metering datamultiparty meteringInformation sensitivityynthetic electricity consumption dataCryptographyprivacy-preserving profiling schemeprivacy-preserving analysibusinesscomputeruser profiling clustering mechanismMulti-Party Metering
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