Search results for "SISTEMI"

showing 10 items of 2026 documents

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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Crowded comparison operators for constraints handling in NSGA-II for optimal design of the compensation system in electrical distribution networks

2006

This paper proposes an improvement of an efficient multiobjective optimization algorithm, Non-dominated Sorting Genetic Algorithm II, NSGA-II, that has been here applied to solve the problem of optimal capacitors placement in distribution systems. The studied improvement involves the Crowded Comparison Operator and modifies it in order to handle several constraints. The problem of optimal location and sizing of capacitor banks for losses reduction and voltage profile flattening in medium voltage (MV) automated distribution systems is a difficult combinatorial constrained optimization problem which is deeply studied in literature. In this paper, the efficiency of the proposed Crowded Compari…

Optimal designMathematical optimizationMultiobjective constrained optimizationSortingCompensation system designRelational operatorSizinglaw.inventionSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaReduction (complexity)CapacitorOperator (computer programming)Genetic algorithmConstraints handlingArtificial IntelligenceControl theorylawGenetic algorithmInformation SystemsMathematicsAdvanced Engineering Informatics
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A double-shell design approach for multiobjective optimal design of microgrids

2010

This work develops a new double shell approach to optimal design for multi-objective optimally managed systems. The cost of each design solution can be defined by the evaluation of operational issues and capital costs. In most systems, the correct definition of operational issues can be deduced by means of the solution of a multi-objective optimization problem. The evaluation of each design solution must thus be deduced using the outcome of a multi-objective optimization run, namely a Pareto hyper-surface in the n-dimensional space of operational objectives. In the literature, the design problem is usually solved by considering a single objective formulation of the operational issue. In thi…

Optimal designSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaMathematical optimizationOptimization problemPower system simulationComputer sciencePareto principleCapital costmicrogrids multiobjective optimization glow-worm optimizationMulti-objective optimizationOutcome (game theory)Evolutionary computation
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A gradient-based decomposition approach to optimize pressure path and counterpunch action in Y-shaped tube hydroforming operations

2008

International audience; In tube hydroforming, the concurrent actions of pressurized fluid and mechanical feeding allows obtaining tube shapes characterized by complex geometries such as different diameters sections and/or bulged zones. Main process parameters are material feeding history (i.e., the punches velocity history), internal pressure path during the process, and (in T- or Y-shaped tube hydroforming) counterpunch action. What is crucial, in such processes, is the proper design of operative parameters aimed to avoid defects (for instance underfilling or ductile fractures). Actually, the design of tube hydroforming operations is mainly aimed to prevent bursting or buckling occurrence …

Optimization0209 industrial biotechnologyEngineeringOptimization problemMechanical engineering02 engineering and technologyIndustrial and Manufacturing EngineeringDecomposition approach[SPI.MAT]Engineering Sciences [physics]/Materials020901 industrial engineering & automationY-shaped tube hydroforming Gradient-based techniques Decomposition approach Optimization0203 mechanical engineeringDecomposition (computer science)Tube (container)Settore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneY-shaped tube hydroformingHydroformingbusiness.industryMechanical EngineeringGradient-based techniquesProcess (computing)Internal pressureStructural engineering[SPI.MECA]Engineering Sciences [physics]/Mechanics [physics.med-ph]Computer Science Applications020303 mechanical engineering & transportsBucklingControl and Systems EngineeringPath (graph theory)businessSoftware
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Increasing efficiency of photovoltaic systems under non-homogeneous solar irradiation using improved Dynamic Programming methods

2017

Abstract The paper presents a complete technique, based on the combination of algorithms, devoted to minimize losses and increase efficiency of Total Cross Tied (TCT) connected photovoltaic (PV) systems under non-homogeneous solar irradiation, based on irradiance equalization criterion. Irradiance equalization is achieved by changing the connections of the solar panels adaptively by a dynamic switching matrix so that total solar radiation on parallel circuits is the most equalized. In this paper, the authors introduce two algorithms. The first one is SmartChoice (SC) algorithm, which is combined with Dynamic Programming (DP) in order to create a hybrid method and obtain better results as co…

OptimizationComputer scienceRenewable Energy Sustainability and the Environment020209 energyPhotovoltaic systemEqualization (audio)Irradiance02 engineering and technologyRadiationSeries and parallel circuitsDynamic programmingSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaMatrix (mathematics)Settore ING-IND/31 - ElettrotecnicaMismatchPhotovoltaic moduleReconfiguration0202 electrical engineering electronic engineering information engineeringElectronic engineeringGeneral Materials ScienceIrradiationMaterials Science (all)
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Energy Management Systems and tertiary regulation in hierarchical control architectures for islanded microgrids

2015

In this paper, the structure of the highest level of a hierarchical control architecture for micro-grids is proposed. Such structure includes two sub-levels: the Energy Management System, EMS, and the tertiary regulation. The first devoted to energy resources allocation in each time slot based on marginal production costs, the latter aiming at finding the match between production and consumption satisfying the constraints set by the EMS level about the energy production in each time slot. Neglecting the efficiency of the different energy generation systems as well as that of the infrastructure for electrical energy distribution, the problem dealt with by the EMS sub-level is linear and can …

OptimizationEngineeringMathematical optimizationMicro-gridsLinear programmingEnergy managementbusiness.industry:Energies [Àrees temàtiques de la UPC]Electric potential energyControl engineeringElectric powerEnergy management systemSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaElectricity generationEnergy management systemsLinear programmingEnergia elèctricaElectric powerMinificationbusinessInteger programmingEnergy management systems linear programming microgrids optimization
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A hierarchical architecture for increasing efficiency of large photovoltaic plants under non-homogeneous solar irradiation

2019

Abstract Under non-homogeneous solar irradiation, photovoltaic (PV) panels receive different solar irradiance, resulting in a decrease in efficiency of the PV generation system. There are a few technical options to fix this issue that goes under the name of mismatch. One of these is the reconfiguration of the PV generation system, namely changing the connections of the PV panels from the initial configuration to the optimal one. Such technique has been widely considered for small systems, due to the excessive number of required switches. In this paper, the authors propose a new method for increasing the efficiency of large PV systems under non-homogeneous solar irradiation using Series-Para…

OptimizationFabricationRenewable Energy Sustainability and the EnvironmentComputer science020209 energyPhotovoltaic systemControl reconfigurationTopology (electrical circuits)02 engineering and technology021001 nanoscience & nanotechnologySolar irradianceSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaMatrix (mathematics)Settore ING-IND/31 - ElettrotecnicaMismatchPhotovoltaic moduleReconfiguration0202 electrical engineering electronic engineering information engineeringKey (cryptography)Electronic engineeringGeneral Materials ScienceArchitecture0210 nano-technology
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Managing electrical energy storage systems and shiftable loads with an innovative approach in energy districts

2014

In this work, a power dispatch problem for a system composed of an aggregate of loads and an electrical energy storage system is considered. The approach to solve the optimal dispatch is innovative and shows good performances in limited calculation times. According to the more recent indications coming from the European distributors, the architecture for energy dispatch at distribution level will be hierarchical. The 'Aggregator' is the interface between groups of loads and the energy distributor and sends the individual consumers the desired load profiles, following which the user may gets a discount on the energy bill. On the other hand, the energy tariff may follow a given daily profile …

OptimizationOptimization;management of resources;shiftable loadsOptimization management of resources shiftable loadsComputer scienceScheduling (production processes)Economic dispatchAutomotive engineeringEnergy storagemanagement of resourcesPower (physics)Settore ING-IND/33 - Sistemi Elettrici Per L'Energiahiftable loadsEnergy profileWork (electrical)Intermittent energy sourceshiftable loadsmanagement of resourceSimulationEnergy (signal processing)
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Real-time pricing for aggregates energy resources in the Italian energy market

2015

Abstract Over the last decade, the architecture of the energy market has radically changed. In many countries end-users are now able to directly access the market, which has given rise to the question of how they can actively participate in that market. End-users can comprise a critical mass through aggregation that is carried out by a third party – to wit the “loads aggregator.” This paper proposes a new framework for generating feasible real-time price curves for those end-users in a demand-response management process. The underlying algorithm generates output curves as the solution to a constrained optimization problem whose objective function is the aggregator's economic benefit. A case…

OptimizationReal time pricingThird partyMechanical EngineeringEnergy resourcesReal time pricingBuilding and Constructioncomputer.software_genrePollutionIndustrial and Manufacturing EngineeringNews aggregatorMicroeconomicsCritical mass (sociodynamics)Settore ING-IND/33 - Sistemi Elettrici Per L'EnergiaGeneral EnergyCommerceEconomicsEnergy marketElectrical and Electronic EngineeringArchitecturecomputerManagement processLoads aggregationCivil and Structural Engineering
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Multi-Objective Optimization of Urban Microgrid Energy Supply According to Economic and Environmental Criteria

2019

This study is focused on the optimization of the annual cost and greenhouse impact related to the supply of natural gas and electricity of an urban microgrid through the installation of components as renewable energy sources, energy storage units and converters. As input parameters of the optimization model, the energy demand of a medium density urban district was estimated, while average costs and emissions of equipment were collected in market reports and literature. The outputs of the model are the optimal size and the schedule of each component. Moreover, optimization analysis was carried out for two different scenarios, comparing Italian and Vietnamese energy system cost and environmen…

OptimizationSchedule020209 energyGreenhouse02 engineering and technologyMulti-objective optimizationEnergy storageMathematical model0202 electrical engineering electronic engineering information engineeringEnergy supplyMicrogridsCogenerationSettore ING-IND/11 - Fisica Tecnica Ambientalebusiness.industryNatural gasEnvironmental economics021001 nanoscience & nanotechnologyRenewable energySettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaEnvironmental scienceElectricityMicrogridResistance heatingCooling0210 nano-technologybusiness2019 IEEE Milan PowerTech
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