ECE 442 Power Electronics1 Voltage Control of Single-Phase Inverters Commonly-used Techniques –Single-Pulse-Width-Modulation –Multiple-Pulse-Width-Modulation.

Slides:



Advertisements
Similar presentations
Ch8 Inverters (converting DC to AC)
Advertisements

INVERTERS (DC-AC Converters).
Lecture 25 Pulse-Width Modulation (PWM) Techniques
ECE Electric Drives Topic 6: Voltage-Fed Converters Spring 2004.
Chapter 4 DC to AC Conversion (INVERTER)
Sinusoidal Pulse-Width Modulation
POWER ELECTRONICS Instructor: Eng.Moayed N. EL Mobaied The Islamic University of Gaza Faculty of Engineering Electrical Engineering Department بسم الله.
ECE Electric Drives Topic 7: Pulse Width Modulation
Chapter 7 Principles of Analog Synthesis and Voltage Control Contents Understanding Musical Sound Electronic Sound Generation Voltage Control Fundamentals.
Chapter 7 PWM Techniques
Copyright by UNIT-IV INVERTERS 4/16/2017 Copyright by
ECE 442 Power Electronics1 NEWMAR 115 – 12 – 20AU Full-Wave Rectifier with Choke-Input Filter.
ECE 442 Power Electronics1 Series-Resonant Inverter.
Three-Phase Inverters
Chapter 4 DC to AC Conversion (INVERTER)
ECE 442 Power Electronics1 Series Resonant Inverter with Bidirectional Switch.
ECE 442 Power Electronics1 Full-Wave Bridge Rectifier.
Single-phase half-bridge inverter. Operational Details Consists of 2 choppers, 3-wire DC source Transistors switched on and off alternately Need to isolate.
Switching-Mode Regulators
ECEN 5817 Resonant and Soft-Switching Techniques in Power Electronics 1 Lecture 23 Series resonant converter.
Single-phase half-bridge inverter
DC-DC Converters Convert a fixed DC Source into a Variable DC Source
A Simulation Study of the PWM Strategy for Inverters
Power Electronics Chapter 6 AC to AC Converters ( AC Controllers and Frequency Converters )
Angle Modulation: Phase Modulation or Frequency Modulation Basic Form of FM signal: Constant Amplitude Information is contained in  (t) Define Phase.
PWM (Pulse Width Modulation)
Three-Phase AC machines Three-Phase Cage Rotor Induction Motor – Electronic Methods of Starting and Speed Control Resource 4.
Single Phase Induction Motor Adjustable Speed Control Using DSP and Micro-Controller Jianming Yao ECE734 Project Fall 2000.
EE462L, Spring 2014 H-Bridge Inverter Basics
Power Electronics Lecture-11 Inverters Dr. Imtiaz Hussain
LECTURE 9 INTRO TO POWER ELECTRONICS
Chapter 25 Nonsinusoidal Waveforms. 2 Waveforms Used in electronics except for sinusoidal Any periodic waveform may be expressed as –Sum of a series of.
Introduction AC voltage controllers are thyristor based devices which convert fixed alternating voltage directly to variable alternating voltage without.
LECTURE 28 AC Voltage Controllers Dr. Rostamkolai
A Differentiator Circuit.  All of the diagrams use a uA741 op amp. ◦ You are to construct your circuits using an LM 356 op amp.  There is a statement.
CIRCUITS, DEVICES, AND APPLICATIONS Eng.Mohammed Alsumady
Electronics Involves the use of devices and circuits to control the flow of electric current to achieve some purpose. These circuits contain: Resistors,
LECTURE 27 Controlled Rectifiers Dr. Rostamkolai
Alternating Current Chapter 12. Generating AC (12-1)
DC to AC converter (Inverter)
Development of a universal bidirectional galvanic isolated switch module for power converter applications Kopano Mokhalodi Vaal University of Technology.
LECTURE 25 Controlled Rectifiers Dr. Rostamkolai
8-1 School of Electrical Systems Engineering ABD RAHIM 2008 EET421 Power Electronic Drives - DC to AC converter / Inverter Abdul Rahim Abdul Razak.
STEPPER MOTORS Name: Mr.R.Anandaraj Designation: Associate. Professor Department: Electrical and Electronics Engineering Subject code :EC 6252 Year: II.
11/20/2015 Fourier Series Chapter /20/2015 Fourier Series Chapter 6 2.
PWM TECHNIQUES The output voltage of the inverter needs to be varied as per load requirement. Whenever the input DC varied, the output voltage can change.
Superposition. Fourier Series Constructive Interference of a pulse.
LECTURE 26 Controlled Rectifiers Dr. Rostamkolai ECE 452 Power Electronics 1.
PWM: Pulse Width Modulation © 2014 Project Lead The Way, Inc.Digital Electronics.
Analog Output Materials: animatronic head Processing Quiz HW: code links.
DC-AC converters [Inverters]
Rectifier A rectifier is an electrical device that converts alternating current (AC), which periodically reverses direction, to direct current (DC), which.
Single-phase half-bridge inverter
Voltage Control of Single-Phase Inverters
Inverters Dr John Fletcher.
Dr. Unnikrishnan P.C. Professor, EEE
DC- AC CONVERTER-INVERTER
Electronic Instrumentation
Power Electronic Drives - DC to AC converter / Inverter
Inverters Dr John Fletcher.
UNIT-8 INVERTERS 11/27/2018.
PULSE-WIDTH-MODULATED OUTPUT
JC Technology Logic Gates.
Single-phase half-bridge inverter
Dr. Unnikrishnan P.C. Professor, EEE
Dr. Unnikrishnan P.C. Professor, EEE
Dr. Unnikrishnan P.C. Professor, EEE
Equalizing Average Source Power with Pattern Swapping
INVERTERS. What is an Inverter? A static device that converts DC power into AC power at desired output voltage and frequency is called an Inverter. Applications.
Presentation transcript:

ECE 442 Power Electronics1 Voltage Control of Single-Phase Inverters Commonly-used Techniques –Single-Pulse-Width-Modulation –Multiple-Pulse-Width-Modulation –Sinusoidal-Pulse-Width-Modulation –Modified-Sinusoidal-Pulse-Width-Modulation –Phase-Displacement Control

ECE 442 Power Electronics2 Single-Pulse-Width-Modulation

ECE 442 Power Electronics3 One Pulse per Half-Cycle Pulse Width Controls the Output Voltage

ECE 442 Power Electronics4 Carrier and Reference Signals Compare the Reference Signal with the Carrier Frequency of the Reference Signal determines the frequency of the Output Voltage Modulation Index = M = A r /A c Gate Pulse

ECE 442 Power Electronics5 Gate Signals and Output

ECE 442 Power Electronics6 rms value of the Output Voltage

ECE 442 Power Electronics7 Fourier Series for the Output Voltage

ECE 442 Power Electronics8 Times and angles of the intersections Pulse width d (or pulse angle δ) T S = T/2

ECE 442 Power Electronics9 Harmonic Profile

ECE 442 Power Electronics10 Multiple-Pulse-Width-Modulation

ECE 442 Power Electronics11 Multiple Pulses per Half-Cycle of Output Voltage

ECE 442 Power Electronics12 Gate Signal Generation Compare the Reference Signal with the Carrier Frequency of the Reference Signal determines the Output Voltage Frequency Frequency of the Carrier determines the number of pulses per half-cycle Modulation Index controls the Output Voltage

ECE 442 Power Electronics13 Gate Signals and Output Voltage Number of pulses per half cycle = p = f c /2f o = m f /2 where m f = frequency modulation ratio

ECE 442 Power Electronics14 rms Value of the Output Voltage

ECE 442 Power Electronics15 Fourier Series of the Output Voltage

ECE 442 Power Electronics16 The times and angles of the intersections The pulse width d (or pulse angle δ)T S = T/2p

ECE 442 Power Electronics17 Harmonic Profile