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A new flowchart for parameters calculation of Hybrid Active Power Filter with Injection Circuit.

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This study introduces a new flowchart for calculating Hybrid Active Power Filter with Injection Circuit (IHAPF) parameters using the Jaya optimization algorithm. The proposed method significantly reduces compensation errors and harmonic distortion, improving power quality.

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Area of Science:

  • Electrical Engineering
  • Power Electronics
  • Control Systems

Background:

  • Hybrid Active Power Filters with Injection Circuits (IHAPF) are crucial for power quality improvement.
  • Efficient parameter calculation is essential for optimal IHAPF performance.
  • Existing optimization algorithms may present limitations in speed and effectiveness.

Purpose of the Study:

  • To develop a novel flowchart for IHAPF parameter calculation.
  • To leverage the Jaya optimization algorithm for enhanced parameter searching.
  • To demonstrate the superiority of the proposed method over existing techniques.

Main Methods:

  • Development of a detailed IHAPF model and identification of key parameters.
  • Definition of parameter constraints and the objective function for optimization.
  • Implementation of a flowchart utilizing the Jaya optimization algorithm for parameter calculation.

Main Results:

  • The proposed flowchart effectively calculates IHAPF parameters.
  • Jaya optimization algorithm demonstrated simplicity, efficiency, and reduced search time.
  • Simulation results on a 10kV-50Hz IHAPF model showed superior performance compared to Firefly, PSO, and SA algorithms.

Conclusions:

  • The novel flowchart with Jaya optimization provides superior results for IHAPF parameter calculation.
  • The method significantly minimizes compensation errors, phase shift, and total harmonic distortion.
  • This approach offers a more efficient and effective solution for power quality enhancement using IHAPFs.