Search results for "NETWORKS"

showing 10 items of 3260 documents

Network Physiology of Cortico–Muscular Interactions

2020

Skeletal muscle activity is continuously modulated across physiologic states to provide coordination, flexibility and responsiveness to body tasks and external inputs. Despite the central role the muscular system plays in facilitating vital body functions, the network of brain-muscle interactions required to control hundreds of muscles and synchronize their activation in relation to distinct physiologic states has not been investigated. Recent approaches have focused on general associations between individual brain rhythms and muscle activation during movement tasks. However, the specific forms of coupling, the functional network of cortico-muscular coordination, and how network structure a…

Flexibility (anatomy)Computer sciencePhysiologybrain wavesPhysiologynetwork physiologylcsh:Physiology03 medical and health sciencesMuscle tone0302 clinical medicineRhythmInteraction networkPhysiology (medical)medicinesleepSettore MAT/07 - Fisica Matematica030304 developmental biologySlow-wave sleepOriginal Research0303 health scienceslcsh:QP1-981burstsMuscular systemSkeletal muscledynamic networksSleep in non-human animalsmedicine.anatomical_structuremuscle tonetime delay stabilitysynchronization030217 neurology & neurosurgeryFrontiers in Physiology
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Semiactive–passive structural vibration control strategy for adjacent structures under seismic excitation

2012

Abstract The objective of this paper is to study a structural vibration control strategy for seismic protection of multi-structure systems that combines interstructure passive damping elements with local feedback control systems implemented in the substructures. These local feedback control systems are independently designed and operated, and use semiactive devices with limited actuation capacity as force actuators. The combined action of local semiactive feedback control systems and passive interstructure links can produce an appropriate reduction in the substructures' vibrational response and, simultaneously, provides additional protection against interstructure collisions. The proposed s…

Flexibility (engineering)EngineeringComputer Networks and Communicationsbusiness.industryApplied MathematicsControl (management)Control engineeringPower (physics)Control and Systems EngineeringControl theorySignal ProcessingStructural vibrationbusinessActuatorReduction (mathematics)ImplementationExcitationJournal of the Franklin Institute
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Cognitive Radio Application for Smart Grid

2012

The communication infrastructure between energy generation, transmission, distribution and utilization will require multi-way communications, interoperability between the advanced and existing system, and end-to-end reliable and secure communications with low-latencies. Revolutionary communication architecture is required for effective operation and control of smart grid, and cognitive radio based communication architecture can provide a unique solution. By leveraging cognitive radio technology, the suggested communications infrastructure promises to utilize potentially all available spectrum resources efficiently in the smart grid. The radio agility allows the smart grid devices to sense t…

Flexibility (engineering)EngineeringExploitComputer Networks and CommunicationsRenewable Energy Sustainability and the Environmentbusiness.industryReliability (computer networking)InteroperabilityEnergy Engineering and Power TechnologyCognitive radioSmart gridTransmission (telecommunications)Interference (communication)Electrical and Electronic EngineeringbusinessComputer networkInternational Journal of Smart Grid and Clean Energy
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Enabling ubiquitous wireless sensor networks: A new fault tolerant RF architecture with perpetual electrical power based on 802.15.4 and RFID

2007

The wireless communications field is in continuous growth and revolution. The current trend toward the use of distributed wireless systems is due to these systems have demonstrated to be a good option due to its flexibility and power. In this line, nowadays there is an enormous demand of wireless connectivity for any industrial control applications, included critical systems. In this paper, we want to discuss possibilities and necessary developments to set up wireless communication for industrial applications in general and critical systems in particular. Furthermore, an abstract definition of a layered architecture for the development of intelligent and distributed control systems based on…

Flexibility (engineering)Key distribution in wireless sensor networksEngineeringWi-Fi arraybusiness.industryWireless networkWirelessbusinessFixed wirelessDistributed control systemWireless sensor networkComputer network2007 IEEE International Workshop on Radio-Frequency Integration Technology
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DEMAND Project: Bottom-Up Aggregation of Prosumers in Distribution Networks

2018

The paper explains the concept of the DEMAND project, whose aim is to develop a technical framework for allowing a Bottom-Up aggregation of prosumers connected to the distribution grid. Load and generation aggregation is a very current issue given the great potential that the coordinated management of distributed resources has on power systems operation and design. The novelty in DEMAND is the absence of a physical aggregator and the recourse to a virtual aggregation environment (VAE) for allowing the exchange of information among the prosumers in order to provide a service to the DSO. After a general description of the research project, the paper presents the services that the aggregated c…

Flexibility (engineering)Service (systems architecture)Control and OptimizationEnergy managementComputer science020209 energyDistributed computingEnergy Engineering and Power TechnologyDistributed GenerationDistribution Grid02 engineering and technologyBiddingDemand Responsecomputer.software_genreGridNews aggregatorSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaElectric power systemAggregationComputer Networks and Communication0202 electrical engineering electronic engineering information engineeringBottom-UpcomputerProsumerProsumer
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CADWAN – A Control Architecture for Dense Wi-Fi Access Networks

2018

The growing demands of ubiquitous computing are leading towards the densification of wireless access networks. The challenges of high density deployments can be addressed by network- wide centralized control. To this end we propose CADWAN – a Control Architecture for efficient management of Dense Wi-Fi Access Networks. Its main advantages are: flexibility (it supports software- defined wireless networking), scalability (it uses a three-tier optimization framework), and extendibility (it exploits a unified control interface with support for heterogeneous devices). Furthermore, CADWAN is complementary to ongoing developments in IEEE 802.11, especially 802.11ax.

Flexibility (engineering)Ubiquitous computingAccess networkComputer Networks and CommunicationsComputer sciencebusiness.industryWireless networkSettore ING-INF/03 - TelecomunicazioniInterface (computing)Distributed computing802.11ax CAPWAP dense networks optimization SDN Wi-Fi.020206 networking & telecommunications020302 automobile design & engineering02 engineering and technologyComputer Science Applications0203 mechanical engineeringScalability0202 electrical engineering electronic engineering information engineeringWirelessElectrical and Electronic EngineeringbusinessComputer network
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A Fast and Interactive Approach to Application Development on Wireless Sensor and Actuator Networks

2014

In Wireless Sensor and Actuator Networks (WSANs) sensor and actuator devices are connected through radio links to perform tasks in many different contexts. Conven- tionally, applications for WSANs are developed using traditional operating systems which application code is linked with at the end of a cross-compilation process. We propose instead an alternative approach for building applications on WSANs that is based on interactivity and does not require time consuming cross-compilation phases. In our development methodology, it is possible to define procedures and services according to the application target, simultaneously test them and reprogram the nodes interactively when needed, even a…

Flexibility (engineering)business.industryComputer scienceProcess (computing)computer.file_formatKey distribution in wireless sensor networksAmbient Intelligence and Collaborative SystemsEmbedded systemMobile wireless sensor networkWirelessExecutableActuatorbusinessWireless sensor networkcomputerMethodologies and ToolSensor/Actuator Networks and Middleware
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Robust Energy Scheduling in Vehicle-to-Grid Networks

2017

The uncertainties brought by intermittent renewable generation and uncoordinated charging behaviors of EVs pose great challenges to the reliable operation of power systems, which motivates us to explore the integration of robust optimization with energy scheduling in V2G networks. In this article, we first introduce V2G robust energy scheduling problems and review the stateof- the art contributions from the perspectives of renewable energy integration, ancillary service provision, and proactive demand-side participation in the electricity market. Second, for each category of V2G applications, the corresponding problem formulations, robust solution concepts, and design approaches are describ…

Flexibility (engineering)ta213smart electrical gridsComputer Networks and CommunicationsComputer sciencebusiness.industry020209 energyDistributed computingReal-time computingRobust optimization02 engineering and technologyGridRenewable energyElectric power systemHardware and Architecture0202 electrical engineering electronic engineering information engineeringKey (cryptography)Electricity marketvehicle-to-gridschedulingEnergy schedulingbusinessSoftwareelectric vehiclesInformation SystemsIEEE Network
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Stability of Positive Systems in WSN Gateway for IoT&IIoT

2020

Modern sensor networks work on the basis of intelligent sensors and actuators, their connection is carried out using conventional or specifically dedicated networks. The efficiency and smooth transmission of such a network is of great importance for the accuracy of measurements, sensor energy savings, or transmission speed. Ethernet in many networks is typically based on the TCP/IP protocol suite. Regardless of whether or not the network transmission is wired or wireless, it should always be reliable. TCP ensures transmission reliability through retransmissions, congestion control and flow control. But TPC is different in networks based on the UDP protocol. The most important here is the tr…

Flow control (data)0209 industrial biotechnologyAutomatic controlbusiness.industryComputer scienceMetzler matrixComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKSNetwork system stability020206 networking & telecommunications02 engineering and technologyWireless sensor networkslaw.inventionNetwork congestion020901 industrial engineering & automationIntelligent sensorIndustrial IoTlawHeaderInternet Protocol0202 electrical engineering electronic engineering information engineeringUser Datagram ProtocolSoftware testing methodologybusinessWireless sensor networkComputer network
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Optimization of Long-Run Average-Flow Cost in Networks With Time-Varying Unknown Demand

2010

We consider continuous-time robust network flows with capacity constraints and unknown but bounded time-varying demand. The problem of interest is to design a control strategy off-line with no knowledge of the demand realization. Such a control strategy regulates the flow on-line as a function of the realized demand. We address both the case of systems without and with buffers. The main novelty in this work is that we consider a convex cost which is a function of the long-run average-flow and average-demand. We distinguish a worst-case scenario where the demand is the worst-one from a deterministic scenario where the demand has a neutral behavior. The resulting strategies are called min-max…

Flow control (data)Mathematical optimizationComputer scienceTime varying systemsFunction (mathematics)Optimal controlFlow networkMin-max optimalityAverage flow cost; Flow control; Gradient-based control; Min-max optimality; Uncertain demand; Time varying systems; Time varying networksComputer Science ApplicationsAverage flow costFlow controlControl and Systems EngineeringRobustness (computer science)Control theoryBounded functionProduction controlElectrical and Electronic EngineeringTime varying networksAverage flow cost flow control gradient-based control min-max optimality uncertain demandGradient-based controlAverage costUncertain demand
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