Classical DC-DC converters used in high voltage direct current (HVDC) power transmission systems, lack in terms of efficiency, reduced transfer gain and increased cost with sensor (voltage/current) numbers. Besides, the internal self-parasitic behavior of the power components reduces the output voltage and efficiency of classical HV converters. This paper deals with extra high-voltage (EHV) dc-dc boost converter by the application of voltage-lift technique to overcome the aforementioned deficiencies. The control strategy is based on classical proportional-integral (P-I) and fuzzy logic closed-loop controller to get high and stable output voltage. Complete hardware prototype of EHV is implemented and experimental tasks are carried out with d...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
Abstract: This paper presents the control strategies by Proportional- Integral (P-I) and Fuzzy Logic...
For high-voltage (HV) applications, the designers mostly prefer the classical DC–DC boost converter....
Classical DC-DC converters used in high voltage direct current (HVDC) power transmission systems, la...
Classical DC-DC converters used in high voltage direct current (HVDC) power transmission systems, la...
Classical DC-DC converters used in high voltage direct current (HVDC) power transmission systems, la...
Classical DC-DC converters used in high voltage direct current (HVDC) power transmission systems, la...
Abstract: Classical DC-DC converters used in high voltage direct current (HVDC) power transmission s...
Abstract: Classical DC-DC converters used in high voltage direct current (HVDC) power transmission s...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
Abstract: This paper presents the control strategies by Proportional- Integral (P-I) and Fuzzy Logic...
For high-voltage (HV) applications, the designers mostly prefer the classical DC–DC boost converter....
Classical DC-DC converters used in high voltage direct current (HVDC) power transmission systems, la...
Classical DC-DC converters used in high voltage direct current (HVDC) power transmission systems, la...
Classical DC-DC converters used in high voltage direct current (HVDC) power transmission systems, la...
Classical DC-DC converters used in high voltage direct current (HVDC) power transmission systems, la...
Abstract: Classical DC-DC converters used in high voltage direct current (HVDC) power transmission s...
Abstract: Classical DC-DC converters used in high voltage direct current (HVDC) power transmission s...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
This paper presents the control strategies by Proportional-Integral (P-I) and Fuzzy Logic (FL) for a...
Abstract: This paper presents the control strategies by Proportional- Integral (P-I) and Fuzzy Logic...
For high-voltage (HV) applications, the designers mostly prefer the classical DC–DC boost converter....