Reactive Power Compensation Using SVC & STATCOM Simulation.

版本 1.0.0 (62.4 KB) 作者: Prem Manoj Mule
Simulation of reactive power compensation using SVC and STATCOM to stabilize voltage and enhance power quality in transmission systems.
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更新时间 2025/3/16

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Voltage Stabilization via Midpoint Reactive Power Compensation Using SVC and STATCOM.
To analyze the dynamic voltage stability and reactive power compensation in a power transmission system using STATCOM (Static Synchronous Compensator) and SVC (Static Var Compensator) in MATLAB Simulink.
  1. Download or Open the File with MATLAB Simulink.
  2. Make sure to save the file in your preferred directory or MATLAB workspace
  3. Enter the Input Data: Input Specification/data
  4. Put data as per provided in above link.
  5. Run the Simulation.
  6. See the output in SCOPE .
Static Var Compensator (SVC)
A shunt connected static var generator or absorber whose output is adjusted to exchange capacitive or inductive current so as to maintain or control specific parameters of the electrical power system (typically bus voltage). This a general term for a thyristor controlled or thyristor switched reactor and/or thyristor switched capacitor or combination. SVC is based on thyristors without gate turn off capability. It includes separate equipment for leading and lagging vars; thyristor controlled or switched reactor for absorbing reactive power and thyristor switched capacitor for supplying the reactive power. SVC is considered by some as a low cost alternative to STATCOM, although this may not be the case if the comparison is made based on the requirement performance and not just MVA size. The SVC consists any of the following combinations.
STATIC SYNCHRONOUS COMPEANSATOR (STATCOM)
A static synchronous generator operated as a shunt connected static var compensator whose capacitive or inductive output current can be controlled independent of the ac system voltage. STATCOM is one of the key FACTs controllers. It can be based on a voltage sourced converter or current source converter. From overall cost point of view, the voltage source converters are preferred, and will be the basis for presentation of most converter-based FACTs controller. For, voltage source converter, its ac output voltage is controlled such that it is just right for the required reactive current flow for any ac bus voltage. DC capacitor voltage is automatically adjusted as required to serve as a voltage source for the converter. STATCOM can be designed to also act as an active filter to absorb system harmonics.
Applications:
  1. Voltage stability improvement.
  2. Reactive power compensation.
  3. Power quality enhancement.
  4. Transient stability support.
  5. Load balancing.
  6. Renewable energy integration.
  7. Industrial applications.

引用格式

Prem Manoj Mule (2025). Reactive Power Compensation Using SVC & STATCOM Simulation. (https://www.mathworks.com/matlabcentral/fileexchange/180401-reactive-power-compensation-using-svc-statcom-simulation), MATLAB Central File Exchange. 检索时间: .

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版本 已发布 发行说明
1.0.0