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Speed control of dc motor using power electronic switch. Here the used switch is dc-dc converter "chopper". The simulation result is also shown im
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Silicon Controlled Rectifier (SCR) is a unidirectional semiconductor device made of silicon.SCR is a three-terminal, four-layer semiconductor device consisting of alternate layers of p-type and n-type material.
Thyristor
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It calculates the power factor of load using ZCD and an Arduino program based on P.F. it determines the how much compensating element should be added to load to make P.F. near to unity. You can also add IoT to monitor the power consumption, Voltage, Current an P. F. of the load remotely.
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Torque Production & Control of Speed in Synchronous Motor. Speed of synchronous motors can be controlled using two methods called open loop and close loop control. Open loop contol is the simplest scalar control method where motor speed is controlled by independent frequency control of the converter. In case of close loop self control mode, instead of controlling the inverter frequency independentaly, the frequency and the phase of the output waveform are controlled by an absolute position encoder mounted on the machine shaft giving an account of position of the rotor.
Speed Control of Synchronous Motor
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Goals of a well designed inverter,Application,Types of power conveter,Introduction to inverters,Properties of an ideal inverter, Block diagram of an inverter ,Pulse Width Modulation,Inverter operation
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Inverter is a device which convert a DC input supply voltage into symmetric AC voltage of desired magnitude and frequency at the output side. It is also know as DC-AC converter. Ideal and practical inverter have sinusoidal and no-sinusoidal waveforms at output respectively. If the input dc is a voltage source, the inverter is called a Voltage Source Inverter (VSI). One can similarly think of a Current Source Inverter (CSI), where the input to the circuit is a current source. The VSI circuit has direct control over ‘output (ac) voltage’ whereas the CSI directly controls ‘output (ac) current. Inverter is a device which convert a DC input supply voltage into symmetric AC voltage of desired magnitude and frequency at the output side. It is also know as DC-AC converter. Ideal and practical inverter have sinusoidal and no-sinusoidal waveforms at output respectively. If the input dc is a voltage source, the inverter is called a Voltage Source Inverter (VSI). One can similarly think of a Current Source Inverter (CSI), where the input to the circuit is a current source. The VSI circuit has direct control over ‘output (ac) voltage’ whereas the CSI directly controls ‘output (ac) current.
Single phase full bridge inverter
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1-ф to 1-ф Cycloconverter ppt
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short discussion about speed control of dc motor in various methods.
Speed control of dc motor
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Dc fed chopper
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Rectifier fed Separately Excited DC Drives
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Speed Control Of DC Motor
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Resonant Converter
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The concept of choice of converter configuration are explained in this presentation
Choice of converter configuration
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Everywhere DC motors are used in large applications, the use of drives are very necessary for the smooth running and operating of these motors. The DC motor drives are used mainly for good speed regulation, frequent starting, braking and reversing.
Dc motor drive
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Mafaz Ahmed
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A presentation on inverter by manoj
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It calculates the power factor of load using ZCD and an Arduino program based on P.F. it determines the how much compensating element should be added to load to make P.F. near to unity. You can also add IoT to monitor the power consumption, Voltage, Current an P. F. of the load remotely.
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VSRAGHU
Torque Production & Control of Speed in Synchronous Motor. Speed of synchronous motors can be controlled using two methods called open loop and close loop control. Open loop contol is the simplest scalar control method where motor speed is controlled by independent frequency control of the converter. In case of close loop self control mode, instead of controlling the inverter frequency independentaly, the frequency and the phase of the output waveform are controlled by an absolute position encoder mounted on the machine shaft giving an account of position of the rotor.
Speed Control of Synchronous Motor
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Goals of a well designed inverter,Application,Types of power conveter,Introduction to inverters,Properties of an ideal inverter, Block diagram of an inverter ,Pulse Width Modulation,Inverter operation
ppt on inveters
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Inverter is a device which convert a DC input supply voltage into symmetric AC voltage of desired magnitude and frequency at the output side. It is also know as DC-AC converter. Ideal and practical inverter have sinusoidal and no-sinusoidal waveforms at output respectively. If the input dc is a voltage source, the inverter is called a Voltage Source Inverter (VSI). One can similarly think of a Current Source Inverter (CSI), where the input to the circuit is a current source. The VSI circuit has direct control over ‘output (ac) voltage’ whereas the CSI directly controls ‘output (ac) current. Inverter is a device which convert a DC input supply voltage into symmetric AC voltage of desired magnitude and frequency at the output side. It is also know as DC-AC converter. Ideal and practical inverter have sinusoidal and no-sinusoidal waveforms at output respectively. If the input dc is a voltage source, the inverter is called a Voltage Source Inverter (VSI). One can similarly think of a Current Source Inverter (CSI), where the input to the circuit is a current source. The VSI circuit has direct control over ‘output (ac) voltage’ whereas the CSI directly controls ‘output (ac) current.
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Speed control of dc motor
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Rectifier fed Separately Excited DC Drives.pptx
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Speed Control Of DC Motor
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Speed Control Of DC Motor
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Resonant Converter
Resonant Converter
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pilurout
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The concept of choice of converter configuration are explained in this presentation
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jawaharramaya
Everywhere DC motors are used in large applications, the use of drives are very necessary for the smooth running and operating of these motors. The DC motor drives are used mainly for good speed regulation, frequent starting, braking and reversing.
Dc motor drive
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A presentation on inverter by manoj
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DC motors
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Excitation Systems.pptx
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M.E. Project PPT
M.E. Project PPT
Mohammed Anas
three level diode clamp inverter. that converts any type of DC ( rectified, PV cell, battery etc.) to AC supply. we made by mosfet and ardiuno . in this ppt we present the Simulink model of a three-level inverter and the hardware presentation of the inverter.
Three level inverter
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Vinay Singh
This paper briefly discusses various types of inverters and the output waveforms of square wave inverter and SPWM inverter. FFT analysis is performed on the outputs obtained for SPWM inverter. The variation in THD by varying the Modulating Index and Carrier Frequency is also included
Study of Different Types of Inverters and FFT Analysis of Output of SPWM Inve...
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RSIS International
summer course
power electronics(ii)
power electronics(ii)
Darya khan
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Powerelectronics Chapter7 090331060223 Phpapp02
kuppam engg college
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Power Electronics Chapter 7
guest8ae54cfb
Power Electronics
Unit iv-inverters-new
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Sakthivel Ganesan
A detailed analysis of the Controlled Converters with SCR. it contains a single-phase Fully controlled- Half Wave and Full Wave Rectifier with R, RL and RLC loads., Three Phase Fully controlled- Half Wave and Full Wave Rectifier with R, RL and RLC loads. Dual Converters. It also explains the effect of source inductance on the performance of converters
Power Electronics - Phase Controlled Converters.pptx
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Poornima D
Interactive inverters
Interactive inverters
mareenotmarie
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MONU KUMAR
SEIG control
622 ewec2006fullpaper
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matavulj
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Seminar302
Seminar302
Ultraman Taro
Third Freshers\' Workshop 2011
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Aditya Agarwal
three level diode clamp inverter. that converts any type of DC ( rectified, PV cell, battery etc.) to AC supply. we made by mosfet and ardiuno . in this ppt we present the Simulink model of a three-level inverter and the hardware reort of the inverter. also discuss about other level inverter and there THD analysis, simulink model and detail. compression between another inverter.
Report On diode clamp three level inverter
Report On diode clamp three level inverter
Vinay Singh
Solid State Control of Electric Drives
Solid State Control of Electric Drive
Solid State Control of Electric Drive
SHIMI S L
gas turbine generator set operation and maintenance
gas turbine generator set operation and maintenance
gas turbine generator set operation and maintenance
AmrSherif54
DC-to-AC convertor
Inverters (DC-AC)
Inverters (DC-AC)
Taimur Ijaz
power electronics daniel hart
Lecture slides_Ch 8 power electronics daniel hart.pdf
Lecture slides_Ch 8 power electronics daniel hart.pdf
GIFT University, Gujranwala, Pakistan
it is a presentation of sinusoidal single pulse width modulation of a single phase uni polar inverter
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Simulation of sinosoidal pulse width modulation
Tanzeel Ahmad
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Excitation Systems.pptx
Excitation Systems.pptx
M.E. Project PPT
M.E. Project PPT
Three level inverter
Three level inverter
Study of Different Types of Inverters and FFT Analysis of Output of SPWM Inve...
Study of Different Types of Inverters and FFT Analysis of Output of SPWM Inve...
power electronics(ii)
power electronics(ii)
Powerelectronics Chapter7 090331060223 Phpapp02
Powerelectronics Chapter7 090331060223 Phpapp02
Power Electronics Chapter 7
Power Electronics Chapter 7
Unit iv-inverters-new
Unit iv-inverters-new
Power Electronics - Phase Controlled Converters.pptx
Power Electronics - Phase Controlled Converters.pptx
Interactive inverters
Interactive inverters
uppcl training in moradabad report
uppcl training in moradabad report
622 ewec2006fullpaper
622 ewec2006fullpaper
Seminar302
Seminar302
Third Freshers\' Workshop 2011
Third Freshers\' Workshop 2011
Report On diode clamp three level inverter
Report On diode clamp three level inverter
Solid State Control of Electric Drive
Solid State Control of Electric Drive
gas turbine generator set operation and maintenance
gas turbine generator set operation and maintenance
Inverters (DC-AC)
Inverters (DC-AC)
Lecture slides_Ch 8 power electronics daniel hart.pdf
Lecture slides_Ch 8 power electronics daniel hart.pdf
Simulation of sinosoidal pulse width modulation
Simulation of sinosoidal pulse width modulation
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Call for papers ICPERE 2012
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Binary Pass-Band Modulation Techniques
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Sugeng Widodo
my first presentation in CBNU
Cascaded multilevel converter for Photovoltaic applications
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Sugeng Widodo
fourier representation of signal and systems
fourier representation of signal and systems
Sugeng Widodo
copyright from Dr. nenny wiryadi saptadji...
geothermal system
geothermal system
Sugeng Widodo
HYDROPOWER
Hydropower
Hydropower
Sugeng Widodo
control of AC machines
control of AC machines
control of AC machines
Sugeng Widodo
inverter
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Sugeng Widodo
DC-DC converters
DC-DC converters
DC-DC converters
Sugeng Widodo
penyearah thyristor
Konverter ac ac (minggu ke 6)
Konverter ac ac (minggu ke 6)
Sugeng Widodo
penyearah thyristor
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Konverter thyristor (kuliah ke 5)
Sugeng Widodo
elda minggu 4-penyearah dioda
Penyearah dioda (kuliah ke 4)
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Sugeng Widodo
penyearah dioda
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Penyearah dioda (kuliah ke 4)
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elda minggu 3 [review basic consep]
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Review of basic concepts (kuliah ke 3)
Sugeng Widodo
bahan kuliah elda minggu 2
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proposal final ekskursi power 2008
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Sugeng Widodo
bahan kuliah pertama ELDA
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cover laporan ekskursi, oleh zasfaried
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Sugeng Widodo
Dc drives
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Sugeng Widodo
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Paper
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Call for papers ICPERE 2012
Call for papers ICPERE 2012
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Binary Pass-Band Modulation Techniques
Cascaded multilevel converter for Photovoltaic applications
Cascaded multilevel converter for Photovoltaic applications
fourier representation of signal and systems
fourier representation of signal and systems
geothermal system
geothermal system
Hydropower
Hydropower
control of AC machines
control of AC machines
Inverter
Inverter
DC-DC converters
DC-DC converters
Konverter ac ac (minggu ke 6)
Konverter ac ac (minggu ke 6)
Konverter thyristor (kuliah ke 5)
Konverter thyristor (kuliah ke 5)
Penyearah dioda (kuliah ke 4)
Penyearah dioda (kuliah ke 4)
Penyearah dioda (kuliah ke 4)
Penyearah dioda (kuliah ke 4)
Review of basic concepts (kuliah ke 3)
Review of basic concepts (kuliah ke 3)
Elektronika daya kuliah ke 2
Elektronika daya kuliah ke 2
Proposal(20april11)
Proposal(20april11)
Elektronika daya kuliah ke 1
Elektronika daya kuliah ke 1
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Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
National Information Standards Organization (NISO)
This presentation was provided by William Mattingly of the Smithsonian Institution, during the third segment of the NISO training series "AI & Prompt Design." Session Three: Beginning Conversations, was held on April 18, 2024.
Mattingly "AI & Prompt Design: The Basics of Prompt Design"
Mattingly "AI & Prompt Design: The Basics of Prompt Design"
National Information Standards Organization (NISO)
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Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: The Basics of Prompt Design"
Mattingly "AI & Prompt Design: The Basics of Prompt Design"
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdf
Inverters
1.
Inverter (Konverter DC
– AC) Pekik Argo Dahono
2.
3.
Variable Speed Drives
4.
Uninterruptibe AC Power
Supplies
5.
Basic Concepts
6.
7.
8.
Inverter Satu-Fasa
9.
Inverter Center-Tap
10.
Inverter Center-Tap
11.
Inverter Center-Tap
12.
Analisis Tegangan Output
Inverter Center-Tap
13.
14.
Half-Bridge Inverter
15.
Analisis Tegangan Output
Inverter Half-Bridge
16.
Inverter Thyristor
17.
Inverter Thyristor
18.
Inverter Full-Bridge
19.
Inverter Full-Bridge
20.
Inverter Tiga-Fasa
21.
Inverter Tiga-Fasa
22.
Inverter Tiga-Fasa
23.
Simulation
24.
Simulated Result
25.
26.
Teknik PWM If
f c /f r integer, the technique is called synchronous otherwise asynchronous
27.
Regular Sampling
28.
Simulation
29.
Simulation Results
30.
Analisis Tegangan Keluaran
nverter PWM Satu-Fasa
31.
Simulation result under
nonsinusoidal reference
32.
33.
Analisis Riak
34.
Analisis Riak
35.
Programmed PWM
36.
Teknik PWM Untuk
Inverter Satu-Fasa Full-Bridge
37.
Three-Phase PWM Inverter
38.
Teknik PWM Inverter
Tiga-Fasa
39.
Simulation
40.
Simulation Results
41.
Teknik PWM Inverter
Tiga-Fasa
42.
Teknik PWM Inverter
Tiga-Fasa
43.
Simulation Result
44.
Switching Function Concept
45.
Current-Type Inverters Current-Type
Inverter Voltage-Type Inverter
46.
Autosequential Commutation
Current-Source Inverters
47.
Current-Source Inverter with
Individual Commutation
48.
Current-Source Inverter with
Fourth-Leg Commutation
49.
Duality Between Voltage-Type
and Current-Type Inverters
50.
Duality Between Voltage-Type
and Current-Type Inverters
51.
Current-Type Inverters
52.
53.
Space-Vector PWM
54.
Space Vector PWM
55.
Space Vector PWM
56.
57.
Diode clamped multilevel
inverters Three-level inverter Five-level inverter
58.
Flying capacitor inverters
Three level inverters Five level
59.
Cascade connection of
single-phase inverters Three level inverter Five level inverter