Search results for "Inverter"

showing 10 items of 129 documents

Implementation and experimental validation of a real-time PWM algorithm based on B-Spline carriers for three phase voltage source inverters

2009

This paper presents the implementation and experimental results of an algebraic real-time sinusoidal pulse width modulation algorithm (SPWM) based on B-Spline carriers. B-spline functions are used as carrier signals with the aim to to reduce harmonic content of the three phase inverter output voltage. The presented algorithm eliminates the problem of B-spline recursive evaluation with convolution integrals or convolution sums in digital counterpart. The pulse pattern synthesis is made with the help pre-calculated duty cycle expressions. In this way there is no real need to synthesize the carrier signal so the hardware and the whole inverter control system becomes cheaper, more reliable and …

Engineeringbusiness.industryPower factorSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciHarmonic analysisAmplitude modulationThree-phaseControl theoryDuty cycleElectronic engineeringInverterVoltage sourcebusinessAlgorithmPWM INVERTORS POWER CONVERTER HARMONICS SPLINESPulse-width modulation2009 IEEE International Symposium on Industrial Electronics
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A Geometrical Simple Approach for Power Silicon Devices Fault Detection and Fault-Tolerant Operation of a Voltage Source Inverter

2012

Fault-tolerant converters have been widely investigated for years and nowadays an extensive technical literature on this field exists. This paper presents a novel fault detection algorithm based on a simple geometrical approach. In the algorithm analysis both the case of faults in single device and the lose of an entire inverter leg have been considered. False positive detections are avoided by considering a proper number of current samples. The proposed fault detection algorithm is characterized by simplicity, low computational and implementation effort with a consequent enough fast execution, easy control integration with the possibility to use it both in hardware in the loop systems and …

Engineeringbusiness.industryPulse width modulation InverterHardware-in-the-loop simulationFault tolerancefault-tolerant systemsConvertersSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciFault detection and isolationFault indicatorStuck-at faultFault coverageElectronic engineeringInverterbusinessFault detection
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Grid synchronization of DC energy storage using Voltage Source Inverter with ZCD and PLL techniques

2015

To increase the penetration of renewable energy sources, a proper energy storage is required. In this context, there is a growing concern about the use of energy storage for overcoming the intermittency of renewable energy sources as well as in demand side management. In order to accomplish grid synchronization of energy storage, proper power conditioning devices are required. This paper analyses single phase grid synchronization of DC energy storage using MATLAB Simulink ® environment. The considered power conditioning device is a Voltage Source Inverter (VSI), which is controlled using two methods called (i) traditional Zero Crossing Detection (ZCD) technique and (ii) the phase detector b…

Engineeringbusiness.industryZero crossingPhase detectorEnergy storageRenewable energylaw.inventionPhase-locked looplawIntermittencyHarmonicsElectronic engineeringbusinessVoltage source inverter2015 IEEE 10th International Conference on Industrial and Information Systems (ICIIS)
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Generalized PWM-VSI Control Algorithm Based on a Universal Duty-Cycle Expression: Theoretical Analysis, Simulation Results, and Experimental Validati…

2007

This paper presents a new approach in realizing various carrier-based pulsewidth-modulation techniques by a generalized control algorithm, which is referred to as the universal control algorithm and is obtained via unequal sharing of null states. The flexibility of such an approach allows one to easily and quickly control two-level inverters. Furthermore, this approach may be also extended with few changes to the control of multilevel inverters. The algorithm that is presented here for two-level voltage-source inverters (VSIs) also obtains efficient detection and management of both the linear and overmodulation ranges. In the overmodulation range, which is treated by using the alpha-beta co…

Engineeringbusiness.industryvoltagesource inverter (VSI)pulsewidth modulation (PWM)Multilevel inverter; overmodulation; pulsewidth modulation (PWM); space-vector modulation (SVM); voltagesource inverter (VSI)space-vector modulation (SVM)Industrial and Manufacturing EngineeringExpression (mathematics)Support vector machineMultilevel inverterNull (SQL)Duty cycleControl theoryWorkbenchAlgorithm designElectrical and Electronic EngineeringOvermodulationbusinessovermodulationPulse-width modulation
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Design and simulation of a fast DC recharging station for EV

2017

In this paper a detailed description of the design and simulation of a DC ultra-fast recharging station for Electric Vehicles is carried out. The system consist of a single AC/DC grid connected inverter, a DC-Bus and two DC/DC converter to recharge the batteries of the EVs. The system also has the vehicleto- grid (V2G) capability. The design of the components of the system and the control schemes are explained and a simulation of the system, performed in Matlab/Simulink environment is presented.

Fast DC battery chargingRenewable Energy Sustainability and the EnvironmentComputer sciencebusiness.industry020209 energyV2G020208 electrical & electronic engineeringElectrical engineeringVehicle-to-gridEnergy Engineering and Power Technology02 engineering and technologyElectric vehicleSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciSettore ING-INF/01 - ElettronicaDc converterBi-directional power converterGrid connected inverterHardware_GENERAL0202 electrical engineering electronic engineering information engineeringMATLABbusinesscomputerEVcomputer.programming_language2017 IEEE 6th International Conference on Renewable Energy Research and Applications (ICRERA)
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A high-efficiency regulation technique for a zero-voltage zero-current power switching converter

1998

This paper describes the application of a new regulation technique to a resonant converter that features zero-voltage (ZV) and zero-current (ZC) switching and works at constant frequency and duty cycle. The regulator utilizes the concept of regulating only a percentage of the total power in a bidirectional manner, thus allowing the converter to be optimized for both mass and efficiency. The proposed regulation technique has a wide range of applicability to almost all types of power converters or inverters that utilize a transformer to produce an isolated output. By using the concept of addition or subtraction of AC voltages, a fully regulated output voltage is achieved. The resultant effect…

Forward converterEngineeringbusiness.industryBuck–boost converterConverterslaw.inventionDuty cycleControl theorylawBoost converterInverterElectrical and Electronic EngineeringTransformerbusinessVoltageIEEE Transactions on Power Electronics
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Four-Level Three-Phase Inverter With Reduced Component Count for Low and Medium Voltage Applications

2021

This paper proposes a novel three-phase topology with a reduced component count for low- and medium-voltage systems. It requires three bidirectional switches and twelve unidirectional switches for producing four-level voltages without using flying capacitors or clamping diodes, reducing the size, cost, and losses. Removing flying capacitors and clamping diodes allows it to simplify control algorithms and increase the reliability, efficiency, and lifetime. A modified low-frequency modulation (LFM) scheme is developed and implemented on the proposed topology to produce a staircase voltage with four steps. Further, a level-shifted pulse width modulation (LSPWM) is used to reduce the filter siz…

General Computer ScienceComputer scienceTopology (electrical circuits)02 engineering and technology01 natural scienceslaw.inventionlawthree-phase inverters0103 physical sciences0202 electrical engineering electronic engineering information engineeringElectronic engineeringGeneral Materials Sciencemultilevel invertersDiode010302 applied physics020208 electrical & electronic engineeringGeneral EngineeringDC-AC convertersClampingControllabilityCapacitorVDP::Teknologi: 500low and medium voltage applicationsFilter (video)lcsh:Electrical engineering. Electronics. Nuclear engineeringfour-level inverterslcsh:TK1-9971Pulse-width modulationVoltage
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Dead-time impact on the harmonic distortion and conversion efficiency in a three-phase five-level Cascaded H-Bridge inverter: mathematical formulatio…

2023

To avoid leg short-circuit in inverters, dead time must be introduced on leg gate signals. Dead time affects the inverter output voltage fundamental harmonic amplitude, voltage harmonic distortion and inverter efficiency by introducing additional voltage drops. In this regard, dead time effects have been widely investigated for traditional two-level three-phase voltage source inverters in the literature but not extensively for multilevel topology structures. This paper provides a detailed analysis of dead time impact on the harmonic distortion and efficiency of Cascaded H-Bridges Multilevel Inverters (CHBMIs). For this purpose, a general mathematical formulation to determine voltage drop du…

General Computer ScienceDead Time Efficiency Harmonic analysis Harmonic Distortion Inverters Modulation Multi Carrier PWM Multilevel Inverter Power harmonic filters Pulse width modulation Switching frequency VoltageGeneral EngineeringGeneral Materials ScienceElectrical and Electronic EngineeringSettore ING-IND/32 - Convertitori Macchine E Azionamenti Elettrici
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Graphical THD minimization procedure for single phase five-level converters

2017

This paper proposes two graphycal procedure to mitigate h harmonics and to minimize the total harmonic distortion (THD), respectively. The paper considers a five-level inverter and fundamental frequency modulation: it computes the two switching angles able to reduce low order harmonics and able to minimize the THD. Simulation results are obtained and, in order to validate the proposed procedure, an experimental prototype is built and experimental results are carried out. The comparison between simulation and experimental results confirms the accuracy of the proposed graphycal procedure. It is shown that the switching angles to mitigate the third-fifth and the third-fifth-seventh harmonics e…

Graphycal Procedure; Grid Codes; Harmonics Mitigation; Multilevel Inverters; Total Harmonic Distortion (THD); Electrical and Electronic Engineering; Control and Systems EngineeringGraphycal ProcedureTotal harmonic distortionEngineeringbusiness.industryTotal Harmonic Distortion (THD)020208 electrical & electronic engineeringModulation indexGrid Codes02 engineering and technologyFundamental frequencyElectronic mailHarmonic analysisHarmonics MitigationMultilevel InvertersControl and Systems EngineeringControl theoryHarmonics0202 electrical engineering electronic engineering information engineeringHarmonicElectronic engineeringInverterElectrical and Electronic Engineeringbusiness2017 IEEE 26th International Symposium on Industrial Electronics (ISIE)
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Decoupled Control Scheme of Grid-Connected Split-Source Inverters

2017

During the last few years, single-stage power conversion systems has undergone a fast evolution to replace the conventional two-stage architecture, which includes a front-end dc-dc boost converter (BC) and an output voltage source inverter (VSI) [1]. This evolution has grown up to improve the overall system performance in terms of reducing its size, weight, and complexity. Most of these single-stage topologies and their different modulation schemes have been reviewed in [1]. Among these different single-stage options, the split-source inverter (SSI), shown in Figure 1, has been recently proposed in [2] as a single-stage dc-ac power converter topology to overcome some demerits in the other s…

Grid connectionSplit-source inverterRenewable energy sourceSingle-stageZ-source inverterSettore ING-INF/01 - ElettronicaVoltage source inverter
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