Search results for "DC-DC converter"

showing 10 items of 20 documents

Architecture of a digital PFM controller for IC implementation

2006

This paper presents a digital controller architecture oriented to IC implementation. The classical digital pulse width modulator (D-PWM), using digital analog converter (DAC), is replaced with a Sigma-Delta (/spl Sigma//spl Delta/) modulator based on pulse frequency modulator (PFM) technique. Results of an investigation from a prototype for DC-DC converter, in terms of simulated and experimental performances, are reported, together with harmonic frequency investigation. The control function design is implemented on a field programmable gate array (FPGA). As a consequence of good agreement between simulated and experimental results, the proposed architecture realizes a digital control loop w…

Analog controlEngineeringPulse-frequency modulationbusiness.industryDC-DC convertersLoop (topology)digital controllerComputer Science::Hardware ArchitectureControl theoryElectronic engineeringDigital controlArchitecturebusinessField-programmable gate arrayDigital control systemsPulse-width modulation
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Adaptive tuning system and parameter estimation of a digitally controlled boost converter with STM32

2019

. This paper proposes a diagnostic system of a power electronic converter, based on a cheap STM32 Nucleo board, aiming to extract some relevant measurements which gives back important values of the converter's parameters behavior. Moreover the designed system is also exploited for implementing the converter's auto tuning in order to optimize its dynamic performance.

Computer scienceEstimation theoryMusical tuningSTM32diagnosticDiagnostic systemSettore ING-INF/01 - ElettronicaPower (physics)Auto tuningOrder (business)DC/DC converterBoost converterElectronic engineeringElectrolytic Capacitor DC-DC Converter Inverter Microcontroller
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A comparison of different DC-DC converters for energy storage management in nearly-Zero Energy Buildings

2020

In the recent years, there has been a notable interest towards renewable sources, energy saving and efficiency optimization, in order to reduce the damages brought by fine dust and greenhouse gases in terms of safety, health and environmental protection. In the building sector renewable sources and energy efficiency optimization are leading to a large scale employment of nearly-Zero Energy Buildings (n-ZEBs), meaning that the balance between produced and required energy is negligible. For a proper n-ZEB implementation, a power system architecture has to be accurately designed, according to the existing renewable sources, loads and storage systems. In this paper, an investigation on differen…

Dc-dc convertersInterleavinginterleaved converters020209 energy02 engineering and technologySettore ING-IND/32 - Convertitori Macchine E Azionamenti Elettrici7. Clean energySettore ING-INF/01 - ElettronicaEnergy storageAutomotive engineeringElectric power systemn-ZEBsdc-dc converters; energy storage systems; interleaved converters; n-ZEBs0202 electrical engineering electronic engineering information engineeringZero-energy buildingSettore ING-IND/11 - Fisica Tecnica Ambientalebusiness.industry020208 electrical & electronic engineeringConvertersRenewable energy13. Climate actionGreenhouse gasEnvironmental scienceenergy storage systemsbusinessEfficient energy use2020 9th International Conference on Renewable Energy Research and Application (ICRERA)
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Analysis and design of bi-directional DC-DC converters for ultracapacitors management in EVs

2018

The on-board energy-storage system of an electric vehicle (EV) should be able to collect large amounts of energy and to deal with fast load variations. The use of hybrid power sources as storage devices is an attractive solution, aiming at maximizing both energy and power density. The battery/ultracapacitors (UCs) combination promises to provide significant benefits. An accurate design of bi-directional converters, capable of proplery managing the charge/discharge of the UCs from/to a voltage bus, is essential. In this paper, a bi-directional DC-DC converter connected to a bank of UCs is described and the simulation results are given as well. The designed converter is a buck-boost type, abl…

Electric VehicleBattery (electricity)Supercapacitorbusiness.product_categorybusiness.industryComputer scienceEnergy management020209 energyElectrical engineeringBatteryDC-DC converter02 engineering and technologyConvertersPower (physics)UltracapacitorsEnergy ManagementElectric vehicle0202 electrical engineering electronic engineering information engineeringHybrid powerbusinessVoltage2018 Thirteenth International Conference on Ecological Vehicles and Renewable Energies (EVER)
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A novel linear-non-linear digital control for DC/DC converters

2006

In this paper, a digitally controlled multi-module DC-DC converter with fast transient response, based on a linear-non-linear control is presented. The proposed digital control improves the stability of the system, cuts off the effects of limit-cycle and reduces the recovery time, by making the "effective" bandwidth of the system independent of the bandwidth of the linear control loop and limits, at the same time, output voltage variations. The novel digital control is AVP-compatible and halves the recovery time. Preliminary hardware tests on a single phase step-down converter are reported. The experimental results match simulation ones, obtained by modelling system with Matlab/Aldec mixed …

Electric potentialDC/DC ConverterDC-DC converterconstant on-timeSettore ING-INF/01 - Elettronicadigital control
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A DC-DC power converter for PV module characterization

2014

In this paper, a standard-compliant electronic load setup for PV module curve detection which features high accuracy, low cost and components count is proposed. The proposed device is based on a DC-DC power converter in open-loop configuration. The proposed system is designed according to regulation constraints in order to achieve high performances in curve detection. Design criteria are discussed. The model is implemented in PSIM environment. Simulation based on data input of a commercial PV Conergy E215P module are carried out under several environmental conditions to show the accuracy of the proposed electronic load. Simulation results are reported.

Engineeringbusiness.industryPhotovoltaic systemOpen-loop controllerDC-DC converterSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciPV characterizationPower (physics)Modeling and simulationElectronic loadmodeling and simulationPV moduleElectronic engineeringData inputbusinessSimulation basedDc dc converter2014 International Symposium on Power Electronics, Electrical Drives, Automation and Motion
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A new current-mode control for DC/DC converter

2005

Current-sensing is used widely in smart power chips, especially in DC/DC converter for voltage regulator modules (VRM), implemented with interleaved synchronous rectifier buck converters. The interleaved technique main difficulty is due to its current-sharing control between the several modules. Besides, if the used control technique is current-mode type, it is necessary create a ramp signal proportional to current on the inductor. In this paper, a lossless current-sensing method, solving the major disadvantages of the current-mode control and implementing a current-sharing technique, is proposed. This innovative technique is tested in a two-module interleaved buck converter.

Forward converterElectric potentialBuck converterComputer scienceFlyback converterDC-DC convertersBoost converterElectronic engineeringĆuk converterconstant on-timeVoltage regulatorInductorSignalINTELEC 05 - Twenty-Seventh International Telecommunications Conference
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A High-Efficiency, Low-Cost Solution for On-Board Power Converters

2012

Wide-input, low-voltage, and high-current applications are addressed. A single-ended isolated topology which improves the power efficiency, reduces both switching and conduction losses, and heavily lowers the system cost is presented. During each switching cycle, the transformer core reset is provided. The traditional tradeoff between the maximum allowable duty-cycle and the reset voltage is avoided and the off-voltage of active switches is clamped to the input voltage. Therefore, the system cost is heavily reduced and the converter is well suited for wide-input applications. Zero-voltage switching is achieved for active switches, and the power efficiency is greatly improved. In the output …

Forward converterEngineeringArticle Subjectbusiness.industryBuck converterBuck–boost converterĆuk converterConverterspower electronics on-board converters dc-dc convertersInductorSettore ING-INF/01 - ElettronicaBoost converterElectronic engineeringElectrical and Electronic EngineeringbusinessElectrical efficiencyAdvances in Power Electronics
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Digital power conversion system based on a sigma-delta modulator linear model

2005

This paper presents a new linear model for the sigma-delta (/spl Sigma//spl Delta/) modulator, based on modeling the nonlinear quantizer with a linear factor, and its input-to-output transfer function is given. The use of a 1-bit sigma-delta modulator in DC/DC power converter systems permits to implement a complete digital control. Results of an investigation from a prototype for a DC-DC converter are here reported. Using of a field programmable gate array allows implementing a simple variable control function. The modulator output produces a variable-frequency variable duty-ratio signal to control the switching power transistors.

Forward converterEngineeringbusiness.industryDC-DC convertersTransistorDelta-sigma modulationSignalTransfer functionlaw.inventionPower (physics)digital controllerNonlinear systemlawElectronic engineeringDigital controlbusinessDigital control systems
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Power losses comparison between Silicon Carbide and Silicon devices for an isolated DC-DC converter

2021

In recent years, new efficient power devices have been implemented. Silicon Carbide has replaced silicon as regards the production and the utilization of many devices, such as MOSFETs, diodes, IGBTs and many others. SiC devices are characterized by a low reverse recovery charge, high carrier saturation velocity, by which it is possible to work at high frequency, and high breakdown voltage. Thanks to the great thermal conductivity and the wide bandgap, these devices can operate at high temperature and reach high voltages and currents. What is important to stress is the fact that power losses in SiC devices are lower than the silicon ones. These are the reasons why these devices are utilized …

Materials scienceSiliconSiC devicesbusiness.industryDC-DC converterschemistry.chemical_elementSaturation velocityHardware_PERFORMANCEANDRELIABILITYSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciSettore ING-INF/01 - ElettronicaIsolated power converterschemistry.chemical_compoundchemistryPower electronicsMOSFETHardware_INTEGRATEDCIRCUITSSilicon carbideOptoelectronicsBreakdown voltagePower semiconductor devicePower lossesbusinessDiode
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