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Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter with Immittance Conversion Topology

Year 2014, Volume: 4 Issue: 3, 539 - 547, 01.09.2014

Abstract

This article introduces the design and analysis of a single-phase single-stage transformer-less grid-tie buck-boost photovoltaic inverter topology for domestic purposes. Functionally, this new inverter can adjust to a wide range of photovoltaic dc variations, higher or lower dc voltages compared to utility line voltage, and in the meantime track the maximum amount of solar energy all in one single power stage. For switching of inverter power circuit, a combination of sinusoidal pulse width modulation (SPWM) and square wave signal under grid synchronization condition are used. Moreover, to control SPWM duty cycle and to regulate the inverter’s instantaneous ac output voltage, a closed-loop SPWM control technique is used to stabilize the output as fast as possible. Besides, we also employed immittance conversion circuit topology in the inverter output terminal instead of conventional LC filter. The design and analysis of working principles of the inverter control circuit and grid synchronization methods are described in details. This paper mainly focuses on the analysis of working principles, computer simulation of the operation and design consideration of the inverter for grid-connected applications. The effectiveness of the proposed system is clarified through the following mathematical modeling and simulations.

Year 2014, Volume: 4 Issue: 3, 539 - 547, 01.09.2014

Abstract

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Details

Primary Language English
Journal Section Articles
Authors

Ahmed Sony Kamal Chowdhury This is me

Sajib Chakraborty This is me

K. M. A. Salam This is me

M. Abdur Razzak This is me

Publication Date September 1, 2014
Published in Issue Year 2014 Volume: 4 Issue: 3

Cite

APA Chowdhury, A. S. K., Chakraborty, S., Salam, K. M. A., Razzak, M. A. (2014). Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter with Immittance Conversion Topology. International Journal Of Renewable Energy Research, 4(3), 539-547.
AMA Chowdhury ASK, Chakraborty S, Salam KMA, Razzak MA. Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter with Immittance Conversion Topology. International Journal Of Renewable Energy Research. September 2014;4(3):539-547.
Chicago Chowdhury, Ahmed Sony Kamal, Sajib Chakraborty, K. M. A. Salam, and M. Abdur Razzak. “Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter With Immittance Conversion Topology”. International Journal Of Renewable Energy Research 4, no. 3 (September 2014): 539-47.
EndNote Chowdhury ASK, Chakraborty S, Salam KMA, Razzak MA (September 1, 2014) Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter with Immittance Conversion Topology. International Journal Of Renewable Energy Research 4 3 539–547.
IEEE A. S. K. Chowdhury, S. Chakraborty, K. M. A. Salam, and M. A. Razzak, “Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter with Immittance Conversion Topology”, International Journal Of Renewable Energy Research, vol. 4, no. 3, pp. 539–547, 2014.
ISNAD Chowdhury, Ahmed Sony Kamal et al. “Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter With Immittance Conversion Topology”. International Journal Of Renewable Energy Research 4/3 (September 2014), 539-547.
JAMA Chowdhury ASK, Chakraborty S, Salam KMA, Razzak MA. Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter with Immittance Conversion Topology. International Journal Of Renewable Energy Research. 2014;4:539–547.
MLA Chowdhury, Ahmed Sony Kamal et al. “Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter With Immittance Conversion Topology”. International Journal Of Renewable Energy Research, vol. 4, no. 3, 2014, pp. 539-47.
Vancouver Chowdhury ASK, Chakraborty S, Salam KMA, Razzak MA. Design and Analysis of Transformerless Grid-Tie Buck-Boost Photovoltaic Inverter with Immittance Conversion Topology. International Journal Of Renewable Energy Research. 2014;4(3):539-47.