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Facts Bacha lo

module 1 part 1.pdf

  • Transmission Interconnections 9
  • Evolution of National Grid in INDIA 13
  • Opportunities for FACTS 17 (FACTS controllers control)
  • What limits the Loading Capability? 22
  • Power Flow control in parallel lines 23
  • Power Flow control in Mesh Network 24
  • Power flow control using Voltage injection method 31
  • Relative Importance of Controllable parameters 34
  • Basic types of FACTS Controllers 36
  • Series controllers 37
  • Shunt controllers 38
  • Combined Series-Series controllers 39
  • Combined Series-Shunt controllers 40
  • Relative Importance of different types of Controllers 41
  • Brief Description and Definitions of FACTS Controllers 45 (converter)
  • Shunt connected controllers 46 (• STATCOM: Static Synchronous Compensator,• SSG: Static Synchronous Generator, SVC: Static Var Compensator ,TCR: Thyristor Controlled Reactor,TSR: Thyristor Switched Reactor,TSC: Thyristor Switched Capacitor,TCBR: Thyristor Controlled Braking Resistor, )
  • Series connected controllers 53 (SSSC: Static Series Synchronous Compensator,• TCSC: Thyristor Controlled Series Capacitor, TSSC: Thyristor Switched Series Capacitor,TCSR: * Thyristor Controlled Series Reactor, IPFC: Interline Power Flow Controller )
  • Combined shunt and series connected controllers 58 (UPFC: Unified Power Flow Controller,TCPST / TCPAR: Thyristor Controlled Phase Shifting Transformer, )
  • Other controllers 60 (TCVR: Thyristor Controlled Voltage Regulator)

Module 1 part 2.pdf

  • AC Transmission Line and Reactive Power Compensation 3 (Analysis of Uncompensated AC Line)
  • Transmission Line Equations 4
  • Performance of a Line Connected to Unity Power Factor Load 6
  • Performance of a Symmetrical Line 9
  • Passive Reactive Power Compensation 13
  • Discrete Passive Compensation 15
  • Compensation by a Series Capacitor Connected at the Midpoint of the Line 16
  • Shunt Compensation Connected at the Midpoint of the Line 20
  • Comparison between Series and Shunt Capacitor 21

Module 2.pdf

  • Objectives of Shunt Compensation 2
  • Midpoint Voltage Regulation for Line Segmentation 3
  • Mid point compensation 7
  • End of Line Voltage Support to prevent Voltage Instability 10
  • Improvement of Transient Stability 12
  • Power oscillations damping 20
  • Summary of Compensator Requirements 22
  • Methods of Controllable VAR generation 23

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