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Interline Unified Power Quality Conditioner
Presented by Siddhartha Dakua Priyanka Panda Ansuman Mahapatra Chetan Nayak Shyamalendu Mahapatro Guided by Mr.P. Naresh Asst.Professor (Dept.EEE)
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CONTENTS Objective Overview of FACTS Structure of IUPQC controller
Typical IUPQC connected in distribution system Function of D-STATCOM Function of DVR Schematic structure of VSC Simulink model without UPQC Simulation results of voltage and current Pwm technique
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OBJECTIVE The Objective of this Project is to improve the Power Quality of feeders in a distribution system by using IUPQC. To enhance the power transfer capability in an existing feeder. To change power flow under dynamic conditions.
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Overview of FACTS FACTS controllers can be classified as
Variable impedance type Voltage Source Converter (VSC) based. The variable impedance type controllers SVC(Static VAR compensator) TCSC(Thyristor controlled series compensator) TCPST(Thyristor controlled phase shift transformer) The VSC based FACTS controllers STATCOM(Static synchronous compensator) DVR(Dynamic voltage restorer) SSSC(Static synchronous series compensator) IPFC(Interline power flow controller) UPFC(Unified power flow contoller) UPQC(Unified power quality conditioner)
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Shunt connected STATCOM
Introduction Shunt connected STATCOM Series connected SSSC Shunt and Series connected UPFC
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Structure of IUPQC Controller
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Typical IUPQC connected in a distribution system.
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Functions of D-STATCOM
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Function of DVR
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Schematic Structure of VSC
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Simulink model of distribution system without IUPQC
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Simulink model of Unbalanced Load L-11
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Simulation result of voltage across unbalanced load L-11
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Simulink model of Non-linear Load L-12
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Simulation result of voltage across non-linear load L-12
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Simulation result of current across unbalanced load L-11
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Simulation result of current across non-linear load L-12
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Pulse width modulation
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Simulink model of PWM technique
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Designing of VSC 1
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Designing of VSC 2
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Overall IUPQC
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Results with IUPQC
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Voltage sag in Feeder 1 with IUPQC
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THANK YOU
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