This paper presents the implementation of Differential Evolution (DE) algorithm to solve Harmonic Elimination Pulse-Width Modulation (HEPWM) problem. HEPWM is widely used in eliminating the low frequency harmonic of output voltage of the inverter. The DE is a simple and efficient evolutionary algorithm in solving the HEPWM transcendental equation. Operations of DE technique were elaborated and the best approach of mutation strategy has been analyzed. Switching angles of HEPWM were calculated offline using DE technique. Then, the switching angles were applied to three-phase voltage source inverter (VSI). Simulation of DE technique and VSI experiment set up were run in Matlab/Simulink
Selective harmonic elimination pulse-width modulation (SHE-PWM) works at low-frequency switching, wh...
This paper proposes a new harmonic elimination PWM (HEPWM) scheme for voltage source inverters (VSI)...
In medium voltage high power application of voltage source inverter (VSI), low switching frequency p...
This paper presents the execution of Differential Evolution (DE) algorithm in order to understand th...
This paper presents an efficient Differential Evolution(DE) based solution for harmonic elimination ...
Harmonic elimination pulse width modulation (HEPWM) method has been widely applied to multilevel vol...
This paper presents a differential evolution (DE) algorithm to solve the optimum switching angles pr...
This study describes the application of a soft computing method - known as differential evolution (D...
This paper proposes the application of Differential Evolution (DE) algorithm to the selective harmo...
This work describes the application of a soft computing technique—known as the differential evolutio...
nature and has been demonstrated to be accurately solved Abstract- An on-line harmonic elimination P...
This paper presents an efficient and reliable Genetic Algorithm based solution for Selective Harmoni...
This paper presents an efficient and reliable Genetic Algorithm based solution for Selective Harmoni...
Differential evolution (DE) algorithm has been applied as a powerful tool to find optimum switching ...
In recent years inverters has taken a vast place in industrial application and is also used in vario...
Selective harmonic elimination pulse-width modulation (SHE-PWM) works at low-frequency switching, wh...
This paper proposes a new harmonic elimination PWM (HEPWM) scheme for voltage source inverters (VSI)...
In medium voltage high power application of voltage source inverter (VSI), low switching frequency p...
This paper presents the execution of Differential Evolution (DE) algorithm in order to understand th...
This paper presents an efficient Differential Evolution(DE) based solution for harmonic elimination ...
Harmonic elimination pulse width modulation (HEPWM) method has been widely applied to multilevel vol...
This paper presents a differential evolution (DE) algorithm to solve the optimum switching angles pr...
This study describes the application of a soft computing method - known as differential evolution (D...
This paper proposes the application of Differential Evolution (DE) algorithm to the selective harmo...
This work describes the application of a soft computing technique—known as the differential evolutio...
nature and has been demonstrated to be accurately solved Abstract- An on-line harmonic elimination P...
This paper presents an efficient and reliable Genetic Algorithm based solution for Selective Harmoni...
This paper presents an efficient and reliable Genetic Algorithm based solution for Selective Harmoni...
Differential evolution (DE) algorithm has been applied as a powerful tool to find optimum switching ...
In recent years inverters has taken a vast place in industrial application and is also used in vario...
Selective harmonic elimination pulse-width modulation (SHE-PWM) works at low-frequency switching, wh...
This paper proposes a new harmonic elimination PWM (HEPWM) scheme for voltage source inverters (VSI)...
In medium voltage high power application of voltage source inverter (VSI), low switching frequency p...