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Elektronika Daya

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... Supply System Matriks saklar Penyearah tak terkendali Penyearah terkendali AC regulator Phase-Controlled AC-AC Cycloconverter Konverter DC-ke-DC ... – PowerPoint PPT presentation

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Title: Elektronika Daya


1
Elektronika Daya
  • Pekik Argo Dahono

2
Elektronika Daya
  • Disiplin ilmu yang mempelajari penggunaan
    teknologi elektronika dalam konversi energi
    (daya) elektrik.
  • Mengapa energi (daya) elektrik perlu
    dikonversikan?
  • Hampir semua peralatan listrik bekerja kurang
    efisien atau tidak bisa bekerja pada sumber
    energi (daya) elektrik yang tersedia.
  • Banyak pembangkit energi (daya) elektrik
    nonkonvensional mempunyai bentuk yang tidak
    kompatibel dengan sumber energi (daya) elektrik
    lainnya.

3
Konverter Daya
4
Klasifikasi Konverter Daya
  • Konverter DC-ke-DC (Chopper)
  • Konverter AC-ke-DC (Penyearah)
  • Konverter DC-ke-AC (Inverter)
  • Konverter AC-ke-AC (Cycloconverter/Matrix)

5
Konverter Sinyal dan Daya

Efficiency is the key
6
Regulator tegangan

Efficiency is very low No ripples on the input
and output sides
7
Switching Regulator

Efficiency is very high Ripples on the input and
output sides
8
Linear and Switching Power Supplies

Linear
Switching
9
Switching Mode Power Supplies
  • Advantages
  • High efficient and small size
  • DC filter capacitor is working at high voltage
    (Energy stored is high)
  • The reactive component requirements are small.
  • Disadvantages
  • Control is more complicated
  • EMC problems

10
Power Supply Comparison
Power Density Efficiency
Linear Power Supply lt0.12 W/cm3 lt40
SMPS 6W/cm3 gt95
11
Power Electronic Applicationsin Power Generation
  • Excitation system
  • Automatic Voltage Regulator
  • Variable Speed Power Generation (Hydro, Wind,
    Microturbine gas)
  • Power Conditioners for Renewable Power Generation
    (Fuel cells, solar cells)
  • Energy Storage

12
Excitation System in Brushless AC Generator
13
Renewable Energy System
14
Rote Island Hybrid Power System
15
Power Electronic Applications in Power
Transmission
  • High-Voltage Direct Current Transmission
  • Static VAR Compensators
  • Series Compensation
  • Phase Shifters
  • Dynamic Braking
  • Flexible AC Transmission System
  • High-Speed Circuit Breakers

16
Static VAR Compensator
  • Improving power factor
  • Reducing voltage drop and losses
  • Increasing maximum power transfer
  • Improving damping factor

17
HVDC Transmission System
  • Asynchronous links
  • Suitable for long distance transmission and
    underground cable transmission
  • Improving damping factor

18
Power Electronic Applications in Power
Distribution
  • Static VAR Compensators
  • Power Conditioners
  • Active Filters
  • Unified Power Conditioners
  • Dynamic Voltage Restorers
  • High-Speed Circuit Breakers
  • Light High-Voltage Direct-Current Distribution
  • Power conditioners for distributed power
    generation

19
Active Filter
20
Power Electronic Applications in Transportation
Industries
  • High-Speed Trains
  • Electric vehicles
  • Elevators
  • Airplanes
  • Ships
  • Unmanned vehicles

21
PWM Inverter for Electric Traction
22
Shinkansen
23
Electric Traction
24
Electric Traction
25
Diesel Electric Locomotive
26
Toyota Prius
27
Ford Escape
28
Toyota Siena
29
Honda Accord
30
Hybrid Vehicles
parallel
Split
Series
31
Power Electronic Applications in Industries
  • Rolling mills
  • Variable speed pump systems
  • Cement kilns
  • Rolling ball mills
  • Robotics
  • Electrolysis

32
Variable Speed Drive Applications
Fixed Speed
VSD
33
Variable Speed Drives
34
Variable Speed Pumping System
35
Power Electronic Applications in Home Appliances
  • Microwave heating
  • Air conditioners
  • Refrigerators
  • Toasters
  • Cookers
  • Vacuum cleaners
  • Wash machines

36
Power Electronic Applications in Information
Industries
  • DC power supplies
  • Distributed power supplies
  • Power conditioners
  • Uninterruptible power supplies
  • Battery chargers
  • Voltage Regulator Modules

37
Is power electronics new technology?
  • Power electronics have been developed since the
    beginning of 20th century when mercury arc and
    vacuum tubes technology was emerged.
  • Power conversion has been known for a long time
    by using a combination of electrical machinery.
  • Power electronics development has grown very fast
    since the introduction of thyristor or SCR
    (Semiconductor controlled rectifier) in nineteen
    fifties.

38
Interdiciplinary nature of power electronics
39
Current Challenges
  • Voltage regulator modules for microprocessors
  • Embedded inverter for motor drives
  • Intelligent power ICs
  • Flexible AC power transmission systems
  • Custom power distribution system
  • Unified power conditioners
  • Renewable energy power generation system

40
Microprocessor operating voltages

41
Laptop Power Supply System
42
Matriks saklar

43
Penyearah tak terkendali

44
Penyearah terkendali
45
AC regulator

46
Phase-Controlled AC-AC Cycloconverter
47
Konverter DC-ke-DC

48
Inverter PWM

49
Understanding Power Electronic Circuits
  • Consider all power semiconductor switches as
    ideal switches
  • Ideal switches have no voltage drop, no leakage
    current, and transition times are zero.
  • Practical considerations are given in detailed
    design.
  • Background on signal electronics is useful to
    understand power electronics.

50
The End
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