A Novel Control Method for Improvement of Voltage Utilization Factor in Three-Phase Multilevel Inverter Considering the Input Voltage Fluctuation

1
S. Narasimha
S. Narasimha
2
M. Sushama
M. Sushama
1 JNTUHCEH/JNTUH

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A Novel Control Method for Improvement of Voltage Utilization Factor in Three-Phase Multilevel Inverter Considering the Input Voltage Fluctuation Banner
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In This paper wind, solar and fuel cells based stand alone cogeneration systems are presented for remote area utilities applications. This type of co generation system output voltages are not constant or stable in always. The generated output voltages are directly connected to the loads, without battery bank or energy storage devices. The PI, fuzzy control method was proposed in this paper using svpwm, such that the output voltage of converter circuit is constant even though input voltages are fluctuation conditions. A three phase multilevel inverter with static and dynamic load was examined to validate for proposed work in MATLAB environment.

9 Cites in Articles

References

  1. Biji Jacob,M Baiju (2015). A New Space Vector Modulation Scheme for Multilevel Inverters Which Directly Vector Quantize the Reference Space Vector.
  2. Azuki Abdul Salam1,Nik Azran,Ab Hadi (2014). Fuzzy Logic Controller for Shunt Active Power Filter.
  3. N Madhanakkumar,T Sivakumaran,D Sri (2014). Performance analysis of PI and fuzzy control for resonant converter incorporating boost converter.
  4. Ritu Sharma,Alka Singh,A Jha (2014). Performance Evaluation of Tuned PI Controller for Power Quality Enhancement for Linear and Non Linear Loads.
  5. K Amei,Y Tanizaki,T Ohji,M Sakui (2007). A Control Method of Superposition Ratio in the Improvement of Voltage Utilization Factor in Three phase Multilevel Inverter considering the DC Voltage Fluctuation.
  6. Abdelouahab Bouafia,Jean-Paul Gaubert,Abdelmadjid Chaoui (2014). High performance direct power control of three-phase PWM boost rectifier under different supply voltage conditions.
  7. Jin-Woo Jung,Nga Thi-Thuy Vu,Dong Dang,Ton Do,Young-Sik Choi,Han Choi (2014). A Three-Phase Inverter for a Standalone Distributed Generation System: Adaptive Voltage Control Design and Stability Analysis.
  8. Zahra Bayat,Ebrahim Babaei,Mohammadali Badamchizadeh (2011). Low order harmonics elimination in multilevel inverters using fuzzy logic controller considering the variations of dc voltage sources.
  9. Lin Chengwu,Zhang Xiaomin,Jiang Qiguang (2013). Research on SVPWM inverter output control technology.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

S. Narasimha. 2015. \u201cA Novel Control Method for Improvement of Voltage Utilization Factor in Three-Phase Multilevel Inverter Considering the Input Voltage Fluctuation\u201d. Global Journal of Research in Engineering - F: Electrical & Electronic GJRE-F Volume 15 (GJRE Volume 15 Issue F3): .

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Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

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GJRE-F Classification: FOR Code: 290903
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v1.2

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April 9, 2015

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English

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In This paper wind, solar and fuel cells based stand alone cogeneration systems are presented for remote area utilities applications. This type of co generation system output voltages are not constant or stable in always. The generated output voltages are directly connected to the loads, without battery bank or energy storage devices. The PI, fuzzy control method was proposed in this paper using svpwm, such that the output voltage of converter circuit is constant even though input voltages are fluctuation conditions. A three phase multilevel inverter with static and dynamic load was examined to validate for proposed work in MATLAB environment.

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A Novel Control Method for Improvement of Voltage Utilization Factor in Three-Phase Multilevel Inverter Considering the Input Voltage Fluctuation

S. Narasimha
S. Narasimha JNTUHCEH/JNTUH
M. Sushama
M. Sushama

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