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VSC based D-STATCOM &
PWM Technique to improve
Power Quality
Mr. Wadkar V. S.
Introduction
 Power distribution systems is suffering from
severe power quality problems, such as
 high reactive power burden,
 Harmonics currents,
 load unbalance,
 excessive neutral current etc.
 The DSTATCOM, is a shunt-connected device,
which takes care of the power quality problems
in the currents.
 In this paper, We proposed A voltage-sourced
converter (VSC) with Pulse-width modulation
(PWM) provides a faster control that is required
for flicker mitigation purpose.
 The voltage regulation in the distribution feeder
is improved by installing a shunt compensator
VOLTAGE SOURCE
CONVERTERS (VSC)
 A voltage-source converter is a power
electronic device, which can generate
a sinusoidal voltage with any required
magnitude, frequency and phase
angle.
 The ‘missing voltage’ is the difference
between the nominal voltage and the
actual.
 The VSC is used to either completely
replace the voltage or to inject the
‘missing voltage’.
VSC Dstatcom
PWM Inverter
Operation
 PWM voltage source converter (VSC) bridge
having six IGBTs with associated anti-parallel
diodes.
 The output voltage of the D-STATCOM is
generated by a DC/AC voltage source converter
operated from an energy storage capacitor.
 The converter produces a set of controllable three-
phase output voltages at the frequency of the AC
power system.
 If the amplitude of output voltage is increased (or
decreased) above the AC system voltage, the
converter generates (or absorbs) reactive power
for the AC system.
DISTRIBUTION STATIC COMPENSATOR
 A voltage-sourced converter (VSC) with PWM
provides a faster control that is required for flicker
mitigation purpose.
 A PWM operated VSC utilizing IGBTs and
connected in shunt is normally referred to as
“STATCOM” or “DSTATCOM”
 Phase-locked loop (PLL) has been used to
generate the switching signals for the VSC.
 The DSTATCOM has been developed using DSP
controller to achieve excellent overall performance.
Advantages
 Improved speed of response.
 capacity for transient overload (upto one
second) in addition to the improved
performance at reduced voltages.
 Limiting voltage swells caused by capacitor
switching.
 Reduction of voltage sags due to common
feeder faults.
Applications of DSTATCOM
-Reactive Power
compensation
- Voltage Regulation
CONCLUSION
 The performance of voltage-sourced converter.
(VSC) with Pulse-width modulation (PWM)
provides a faster control that is required for flicker
mitigation purpose. The voltage regulation in the
distribution feeder is improved by installing a shunt
compensator. We proposed DSTATCOM is
modeled and its performance is verified for power
factor correction and voltage regulation along with
neutral current compensation, harmonic elimination
and load balancing with linear loads and non-linear
loads.

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VSC based DSTATCOM

  • 1. VSC based D-STATCOM & PWM Technique to improve Power Quality Mr. Wadkar V. S.
  • 2. Introduction  Power distribution systems is suffering from severe power quality problems, such as  high reactive power burden,  Harmonics currents,  load unbalance,  excessive neutral current etc.  The DSTATCOM, is a shunt-connected device, which takes care of the power quality problems in the currents.  In this paper, We proposed A voltage-sourced converter (VSC) with Pulse-width modulation (PWM) provides a faster control that is required for flicker mitigation purpose.  The voltage regulation in the distribution feeder is improved by installing a shunt compensator
  • 3. VOLTAGE SOURCE CONVERTERS (VSC)  A voltage-source converter is a power electronic device, which can generate a sinusoidal voltage with any required magnitude, frequency and phase angle.  The ‘missing voltage’ is the difference between the nominal voltage and the actual.  The VSC is used to either completely replace the voltage or to inject the ‘missing voltage’.
  • 6. Operation  PWM voltage source converter (VSC) bridge having six IGBTs with associated anti-parallel diodes.  The output voltage of the D-STATCOM is generated by a DC/AC voltage source converter operated from an energy storage capacitor.  The converter produces a set of controllable three- phase output voltages at the frequency of the AC power system.  If the amplitude of output voltage is increased (or decreased) above the AC system voltage, the converter generates (or absorbs) reactive power for the AC system.
  • 7. DISTRIBUTION STATIC COMPENSATOR  A voltage-sourced converter (VSC) with PWM provides a faster control that is required for flicker mitigation purpose.  A PWM operated VSC utilizing IGBTs and connected in shunt is normally referred to as “STATCOM” or “DSTATCOM”  Phase-locked loop (PLL) has been used to generate the switching signals for the VSC.  The DSTATCOM has been developed using DSP controller to achieve excellent overall performance.
  • 8. Advantages  Improved speed of response.  capacity for transient overload (upto one second) in addition to the improved performance at reduced voltages.  Limiting voltage swells caused by capacitor switching.  Reduction of voltage sags due to common feeder faults.
  • 9. Applications of DSTATCOM -Reactive Power compensation - Voltage Regulation
  • 10. CONCLUSION  The performance of voltage-sourced converter. (VSC) with Pulse-width modulation (PWM) provides a faster control that is required for flicker mitigation purpose. The voltage regulation in the distribution feeder is improved by installing a shunt compensator. We proposed DSTATCOM is modeled and its performance is verified for power factor correction and voltage regulation along with neutral current compensation, harmonic elimination and load balancing with linear loads and non-linear loads.