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June 24, 2008IEEE Transactions on Industrial Electronics297 citations

Multilevel Diode-Clamped Converter for Photovoltaic Generators With Independent Voltage Control of Each Solar Array

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SBSergio Busquets‐MongeJRJoan RocabertPRPedro Rodríguez

Key Points

  • This study aims to enhance power generation from photovoltaic arrays by utilizing a multilevel diode-clamped converter.
  • Proposed a control and pulse-width modulation scheme for independent voltage control of each photovoltaic array.
  • Conducted simulation and experimental tests with three photovoltaic arrays connected to a four-level three-phase diode-clamped converter.
  • Achieved maximum power extraction compared to conventional two-level inverter systems.
  • Reduced the voltage rating of devices, enhancing performance characteristics.
  • Decreased output-voltage distortion, leading to improved system efficiency.

Abstract

In photovoltaic (PV) power systems where a set of series-connected PV arrays (PVAs) is connected to a conventional two-level inverter, the occurrence of partial shades and/or the mismatching of PVAs leads to a reduction of the power generated from its potential maximum. To overcome these problems, the connection of the PVAs to a multilevel diode-clamped converter is considered in this paper. A control and pulsewidth-modulation scheme is proposed, capable of independently controlling the operating voltage of each PVA. Compared to a conventional two-level inverter system, the proposed system configuration allows one to extract maximum power, to reduce the devices voltage rating (with the subsequent benefits in device-performance characteristics), to reduce the output-voltage distortion, and to increase the system efficiency. Simulation and experimental tests have been conducted with three PVAs connected to a four-level three-phase diode-clamped converter to verify the good performance of the proposed system configuration and control strategy.

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Cite This Study

Busquets‐Monge et al. (2008) studied this question.

synapsesocial.com/papers/6a08ecec3589fa5d64d6095fhttps://doi.org/10.1109/tie.2008.924011
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