Search results for "Energy storage."

showing 10 items of 228 documents

Frequency stability in microgrid: control strategies and analysis of BESS aging effects

2016

In order to ensure a thorough analysis, all components placed in a microgrid would have to be considered to guarantee an effective energy management. To this aim, various algorithms are used both to preserve and restore power systems after significant disturbances. However, these models frequently do not evaluate components performance decline with the age and, consequently, they don't consider actual values during microgrid analysis, potentially affecting obtained results. In particular, evaluating energy storage systems aging and their effects has rarely been addressed in prior works. The present article proposes a model to maintain power system/microgrid stability after disturbances usin…

EngineeringControl and Optimizationtorage aging020209 energyControl (management)Automatic frequency controlStability (learning theory)02 engineering and technologyEnergy storageElectric power systemfrequency controlmicrogrid frequency control energy storage load shedding storage aging0202 electrical engineering electronic engineering information engineeringstorage agingElectrical and Electronic Engineeringload shedding;microgrid;energy storage;frequency control;storage agingbusiness.industryenergy storageMechanical EngineeringLoad SheddingControl engineeringload sheddingReliability engineeringmicrogridComputer data storageAutomotive EngineeringMicrogridbusiness
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PCM Thermal Energy Storage in Buildings: Experimental Study and Applications

2015

Abstract The study aims at analyzing the performance of Phase Change Materials (PCMs) in residential housing for different climates. This paper presents the results of an experiment performed in the Concordia University Solar Simulator and Environmental Chamber research facility (SSEC, Montreal, Canada). PCM boards were embedded on the back wall of a test hut placedin the climatic chamber. Several experiments were performed to explore the potential for verification of the proposed analysis and to produce enough data to perform model calibrations. Results show a strong increase in the apparent thermal inertia of the room allowing for a reduction in daily temperature fluctuations in the test …

EngineeringEmulationSettore ING-IND/11 - Fisica Tecnica AmbientaleMeteorologyThermal inertiabusiness.industryCold climateModel calibrationEnvironmental chamberThermal energy storagePhase-change materialsBuilding simulationMultiple layerEnergy(all)EnergyPlusPhase change materials modelling experiment energy plus parametric analysisThermal massSolar simulatorAerospace engineeringbusinessEnergy Procedia
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Phase Change Materials Applications to Optimize Cooling Performance of Buildings in the Mediterranean Area: A Parametric Analysis

2015

Abstract Building integrated thermal energy storage systems cover a wide range of techniques and solutions depending on technology applications and aims. They however all have in common the concept behind: being able to store energy for later use in order to reduce the time mismatch between energy availability and demand. In this context, Phase Change Materials (PCMs) fit the above description, since they would allow for mostly isothermal phase change within normal thermal comfort range. In order to face the typical challenges of the Mediterranean climate, the following concept was elaborated: the idea is to use the phase change mechanics as a substitute to the thermal inertia of massive wa…

EngineeringEnergy storageSettore ING-IND/11 - Fisica Tecnica Ambientalebusiness.industryMechanical engineeringThermal comfortNatural ventilationContext (language use)Thermal energy storagePhase change materialsEnergy PluEnergy storageBuilding simulationEnergy(all)Range (aeronautics)businessEnergy PlusEnergy (signal processing)Phase change materialEfficient energy useEnergy Procedia
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Smart district energy optimization of flexible energy units for the integration of local energy storage

2017

Several changes are involving electrical power systems, especially distribution networks. For this reason, the actors in charge of managing and operating reliably these grids are facing many technical issues regarding demand and supply balancing, Renewable Energy Sources and Electric Vehicles integration, peak load shaving, etc. In this context, many energy actions have been implemented for providing services to the power system managers by means of prosumers' demand and/or supply flexibility. This study reports the development of a centralized energy management solution for smart grids equipped with local storage devices, RES, consumers and other energy facilities in a district context. Th…

EngineeringEnvironmental EngineeringEnergy managementDistributed computingEnergy Engineering and Power Technology02 engineering and technologyRenewable Energy Source7. Clean energyCivil engineeringEnergy engineeringEnergy storageIndustrial and Manufacturing EngineeringElectric power systemIntermittent energy source0202 electrical engineering electronic engineering information engineeringElectrical and Electronic EngineeringElectrics Vehiclebusiness.industry2ndlife-battetyRenewable energyEnergy management systemMulti-objective optimizationSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaSmart gridDistrict020201 artificial intelligence & image processingbusiness
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Finite difference thermal model of a latent heat storage system coupled with a photovoltaic device: Description and experimental validation

2014

Abstract The use of photovoltaic (PV) systems has been showing a significant growth trend but for a more effective development of this technology it is essential to have higher energy conversion performances. Producers of PV often declare an higher efficiency respect to real conditions and this deviation is mainly due to the difference between nominal and real temperature conditions of the PV. To improve the solar cell energy conversion efficiency many authors have proposed a methodology to keep lower the temperature of a PV system: a modified PV system built with a normal PV panel coupled with a Phase Change Material (PCM) heat storage device. In this paper is described a thermal model ana…

EngineeringFDMRenewable Energy Sustainability and the Environmentbusiness.industryPhotovoltaic systemEnergy conversion efficiencyFinite difference methodFinite differenceEnergy balancePVThermal energy storagePhase-change materialControl theoryPCMEnergy transformationbusinessRenewable Energy
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Multi-objective optimized management of electrical energy storage systems in an islanded network with renewable energy sources under different design…

2014

The subject addressed in this paper is the definition of some strategies for the design and the optimaized management of EES (Electrical Energy Storage) systems, for an existing islanded distribution network supplying the Island of Pantelleria (Italy) in the Mediterranean Sea. In the paper the authors have drawn interesting conclusions through the application of an efficient MO (multi-objective) optimization algorithm, the NSGA-II, minimizing the energy losses in the grid, the total electricity generation cost and the greenhouse gas emissions. The results obtained for different installation scenarios of the EES are presented and discussed, putting into evidence the technical, environmental …

EngineeringGHG (greenhouse gas)Industrial and Manufacturing EngineeringEnergy lossesDistribution systemElectric power systemIslanded systemElectrical and Electronic EngineeringCivil and Structural Engineeringbusiness.industryMechanical EngineeringControl engineeringBuilding and ConstructionEnergy losseGridPollutionReliability engineeringElectrical energy storageRenewable energySettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaGeneral EnergyElectricity generationGreenhouse gasIslanded system;GHG (greenhouse gas);Energy losses;Electric energy storagebusinessElectric energy storageEnergy (signal processing)
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EABOT – Energetic analysis as a basis for robust optimization of trigeneration systems by linear programming

2008

Abstract The optimization of synthesis, design and operation in trigeneration systems for building applications is a quite complex task, due to the high number of decision variables, the presence of irregular heat, cooling and electric load profiles and the variable electricity price. Consequently, computer-aided techniques are usually adopted to achieve the optimal solution, based either on iterative techniques, linear or non-linear programming or evolutionary search. Large efforts have been made in improving algorithm efficiency, which have resulted in an increasingly rapid convergence to the optimal solution and in reduced calculation time; robust algorithm have also been formulated, ass…

EngineeringMathematical optimizationLinear programmingElectrical loadRenewable Energy Sustainability and the Environmentbusiness.industryEnergy Engineering and Power TechnologyRobust optimizationThermoeconomicsThermal energy storageFuel TechnologyNuclear Energy and EngineeringRobustness (computer science)Algorithmic efficiencyTrigeneration Optimization Linear programming Thermoeconomics Multi-objectivebusinessMATLABcomputerSimulationcomputer.programming_languageEnergy Conversion and Management
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Decentralized price-driven grid balancing via repurposed electric vehicle batteries

2017

Abstract The share of electricity generated from intermittent renewable sources, e.g., wind and solar grows rapidly. This affects grid stability and power quality. If the share of renewable power generation is to be increased further, additional flexibilities must be introduced. Aggregating small, distributed loads and energy storage facilities is a good medium-term option. In this paper, the suitability of decentralized and on-site optimized storage system consisting of repurposed electric vehicle batteries for grid balancing is investigated. Battery operation is controlled via an optimization procedure, which relies on a one-way communicated pseudo-cost function (PCF). Day-ahead electrici…

EngineeringMathematical optimizationbusiness.product_category020209 energy02 engineering and technologyIndustrial and Manufacturing EngineeringEnergy storageElectric vehicleIntermittent energy source0202 electrical engineering electronic engineering information engineering0601 history and archaeologyElectrical and Electronic EngineeringInteger programmingCivil and Structural EngineeringSequential quadratic programming060102 archaeologybusiness.industryMechanical EngineeringElectrical engineering06 humanities and the artsBuilding and ConstructionGridPollutionRenewable energyGeneral EnergyDistributed generationbusinessEnergy
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Grid integration of PEM fuel cell with multiphase switching for maximum power operation

2016

Energy storage in the form of electrolytic Hydrogen can play an important role for integration of intermittent renewable energy sources in the smart grid environment. Electrolytic Hydrogen can be used as a fuel in proton exchange membrane (PEM) fuel cell. In this work, a technique for multiphase switching of a DC-DC converter associated with grid integration of a PEM fuel cell stack for maximum power operation in non-dispatchable mode is proposed. The presented system consists of a PEM fuel cell stack which is operating in non-dispatchable mode of operation, DC-DC multiphase switching boost converter for maximum power operation and a grid tied three phase voltage source inverter (VSI). VSI …

EngineeringMaximum power principlebusiness.industry020209 energy020208 electrical & electronic engineeringElectrical engineeringProton exchange membrane fuel cell02 engineering and technologyEnergy storagePower (physics)Renewable energySmart gridStack (abstract data type)Boost converter0202 electrical engineering electronic engineering information engineeringbusiness2016 IEEE International Conference on Power System Technology (POWERCON)
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Promotion of polygeneration for buildings applications through sector- and user-oriented “high efficiency CHP” eligibility criteria

2014

Abstract The eligibility criteria adopted to assess polygeneration plants as “highly efficient” can play a determinant role in favouring or discouraging the market growth of polygeneration systems, especially for buildings applications where economic viability is often more difficult to achieve. Based on the current European framework, in this paper the opportunity to adopt sector- and user-oriented criteria is discussed. After having identified three buildings with different uses (a large hotel, a hospital and an office building), the optimal lay-out and operation strategy of a polygeneration plant serving each building is determined; then, ex-post processing of economic and energetic resu…

EngineeringPolygeneration Buildings High efficiency Legislative framework Sector-oriented User-orientedWaste managementbusiness.industrymedia_common.quotation_subjectEnergy Engineering and Power TechnologyContext (language use)Free spaceEnvironmental economicsThermal energy storageIndustrial and Manufacturing EngineeringMarket growthPromotion (rank)Economic viabilitySettore ING-IND/10 - Fisica Tecnica IndustrialeElectricityUser orientedbusinessmedia_common
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