0000000001230231

AUTHOR

Giuseppe Maria Di Blasi

showing 10 related works from this author

Modeling and simulation of a digital control design approach for power supply systems

2006

Electronic designers need to model and simulate system features as close as possible to its effective behaviour. Moreover, today, electronics systems are often composed of mixed analog and digital components. The increasing complexity has led to the use of different simulation softwares, each one specific for a particular level of abstraction: mathematical, circuital, behavioural, etc. In order to simulate the entire system these softwares should work together: co-simulation is necessary for digitally controlled power electronics systems. In this paper, the modeling of a digitally controlled switching power supply system using MATLAB/Simulink, ALDEC Active-HDL and Powersys PSIM is presented…

Switched-mode power supplyComputer sciencedesign approachHardware description languagemodelingControl engineeringsimulationdigital controlModeling and simulationpower supplyPower electronicsVHDLElectronic engineeringDigital controlco-simulationElectronicsMATLABcomputercomputer.programming_language2006 IEEE Workshops on Computers in Power Electronics
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IV loop (current-voltage loop): Tecnica di controllo di un DC/DC converter step-down con sense sul nodo di phase

2005

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An innovative PWM loop control for VRMs

2006

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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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Dedicated anlog-to-digital converter for digital VRM

2007

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A steady-state and dynamic fuel cell model for power electronics design

2007

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PWM DC/DC converter based on an innovative current sensing technique

2005

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A novel digital control technique for DC/DC converters to improve steady-state performances

2006

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Micro Fuel Cell for Powering Portable Electronic Market

2004

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Non-Linear Digital Control for DC-DC Power Converter

2004

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