Power Electronic (Pe) System
Power Electronic (Pe) System
Power Electronic (Pe) System
=
CONVERTER CLASSIFICATION
AC to DC : Rectifier
AC input DC output
DC to AC : Inverter
DC input AC output
DC to DC : Chopper
DC input DC output
AC input AC output
3
POWER ELECTRONIC SYSTEM
To convert electrical energy from one form to
another, i.e. from the source to load with:
highest efficiency,
highest availability
highest reliability
lowest cost,
smallest size
least weight.
4
SCOPE AND APPLICATIONS
Static applications
involves non-rotating or moving mechanical
components.
Examples:
DC Power supply, Un-interruptible power supply, Power
generation and transmission (HVDC), Electroplating,
Welding, Heating, Cooling, Electronic ballast.
5
SCOPE AND APPLICATIONS
Drive applications
intimately contains moving or rotating components
such as motors.
Examples:
Electric trains, Electric vehicles, Air-conditioning
System, Pumps, Compressor, Conveyer Belt (Factory
automation).
6
Aplikasi
Modul Lab Elda
2.Power Semikonduktor
II : CONTROLLED RECTIFIER
Definiton :
Controlled rectifier means to have control process at
rectifier. This control process uses thyristor. Thyristor
operates like diode, only conduct in one direction or
forward bias operation. But thyristor I need impulse as
a
G (Gate) Vak
Vbo
11 Thyristor: Symbol
CONTROLLED RECTIFIER
Half Cycle Controlled Rectifier
12
CONTROLLED RECTIFIER
Half cycle controlled rectifier with inductive
and resistive load
13
CONTROLLED
TRIGGER SIGNAL RECTIFIER
14
GENERATE THE TRIGGER
CONTROLLED RECTIFIER
15
CONTROLLED
Controlled RECTIFIER
rectifier single phase full cycle.
16
Controlled rectifier three phase full cycle.
CONTROLLED RECTIFIER
17
Ideal rectifier waveform.
CONTROLLED RECTIFIER
18
CHAPTER
Definiton :
– IV : INVERTER
Inverter or DC-AC Converter is a device that
convert DC power to AC. It is typical used in
UPS, HVDC or industrial drive motor.
Figure a. VSI
Figure b. CSI
INVERTER
VSI with DC Link Variable
INVERTER
Three Phase Square Wave Inverter (VSI controlled)
INVERTER - EXAMPLE
Three phase inverter use 6 thyristor with triggers S1, S2, S3,
S4, S5, and S6. The figure shows simple circuit of 3 phase
inverter. Figure 4.16 shows trigger sequence from S1 until S6
dan inverter output waveform.
Trigger sequence and output waveform
INVERTER - EXAMPLE
With h = 6n+1 (n = 1, 2 , 3, …)
CHAPTER – V : DC CHOPPER
Definiton :
A chopper is a static device which is used to obtain
a variable dc voltage from a constant dc voltage
source. Choppers has two type based on their
function :
Step-down chopper
Step-up chopper
TCA 785
1 2 3 4 5 6 7 8
Qs Q2 Qu Q1 Vsync I Qz Vref
V sinkronisasi
220V/48V
TRANFORMATOR
TIGA FASA
CATU DAYA DC
+15V
4.AC Voltage Controller 1 Phasa
AC Voltage controller 3 Phasa
5.Inverter adalah
INVERTER
- Suatu peralatan konversi energi yang dapat mengubah tegangan dan frekwensi
keluaran AC dalam mengontrol perputaran sebuah motor induksi.
AC Input Converter Intermediate Braking Inverter
circuit
AC Drive
VFD (Variable Frequency Drive), ASD (Adjustable Speed Drive)
VVVF (Variable Voltage Variable Frequency)
39/32
Wiring Diagram
Gelombang Inverter
www.automation-talk.info
Rangkaian Daya Inverter 3 Phasa
HARMONIC
Environment Friendly Motor Drive
Matrix Converter
Varispeed AC
Harmonic pd Rectifier 3 Phasa Full
Wave
Inverter LS iG5A
• Ukuran sangat compact
• Volts/hertz dan kontrol vektor sensorless
• Torsi 150% merata disemua frekwensi
• Parameter motor auto-tuning pada posisi stop
• Frekwensi pembawa 1 ~ 15 KHz
• Deteksi Ground fault saat run
• Fasilitas kontrol PID
• Fungsi Up/down & pengoperasian 3-wire
• Fasilitas keypad remote
• Input analog 0~10Vdc, -10~+10Vdc
• Pemilihan signal input PNP/NPN
• Pemilihan konfigurasi I/O
• Fasilitas komunikasi ModBus (RS485)
• Fasilitas Braking IGBT
SKEMA SOFTSTARTER
46/32
Wiring Diagram
FILTER AND HARMONIC
HARMONIC
Low Pass Filter is passes the frequency that lower than fcutoff
and suppress the frequency that higher than fcutoff. For some
AC motor drive application, filter is not required.
Main Component of UPS
Rectifier- Charger
Inverter
Transfer Switches
Battery
Konfigurasi Dasar Sistem AC
Uninterruptible Power Supply
Kondisi Operasi
Tegangan input AC UPS : 400 VAC 3 phase
= 107,56 sel
Kapasitas Ah yang dibutuhkan
Design Margin (Dm) : 15%
Temp. Correction (K1) : 1 (pada suhu 25°C) -> IEEE Std. 485-997
Altitude Correction (K2) : 1 (pada ketinggian kurang dari 1000 meter) -> IEC 62040-3
: 412,72 Ah
: AhR x 50%
: 206,36 Ah
: 257,95 Ah
Pemilihan Baterai
Synthetic Time, TS (durasi backup) : 2 jam
Battery Peak Discharge Current @ TS, Acell : 142A (berdasarkan data katalog
GNB Absolyte IIP)
Battery set in parallel (Ps) :1
Kapasitas Ah baterai : Ps x Acell x TS
: 1x 142A x 2h
: 284Ah
Depth of Discharge :
:
: 72,66%
Kebutuhan Inverter
Inverter rating :
:
: 34535,49 kVA
Inverter rating dipilih : 35 kVA
Iout :
:
: 152,17 A
Kebutuhan Rectifier
(Battery Charger)
Total beban + desain kontingensi 15% : 27.257,30 W
Arus pengisian baterai (Ic) : -> IEEE Std. 946 - 1992
:
: 28,37 A
Arus input inverter :
:
: 127,153 A