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A Single-Stage Single-Phase Transformer-Less Doubly Grounded Grid-Connected PV Interface

机译:单级单相无变压器双接地光伏并网接口

摘要

A transformer provides galvanic isolation and grounding of the photovoltaic (PV) array in a PV-fed grid-connected inverter. Inclusion of the transformer, however, may increase the cost and/or bulk of the system. To overcome this drawback, a single-phase, single-stage [no extra converter for voltage boost or maximum power point tracking (MPPT)], doubly grounded, transformer-less PV interface, based on the buck-boost principle, is presented. The configuration is compact and uses lesser components. Only one (undivided) PV source and one buck-boost inductor are used and shared between the two half cycles, which prevents asymmetrical operation and parameter mismatch problems. Total harmonic distortion and dc component of the current supplied to the grid is low, compared to existing topologies and conform to standards like IEEE 1547. A brief review of the existing, transformer-less, grid-connected inverter topologies is also included. It is demonstrated that, as compared to the split PV source topology, the proposed configuration is more effective in MPPT and array utilization. Design and analysis of the inverter in discontinuous conduction mode is carried out. Simulation and experimental results are presented.
机译:变压器为光伏馈电并网逆变器中的光伏(PV)阵列提供电流隔离和接地。然而,包括变压器会增加系统的成本和/或体积。为克服此缺点,提出了一种基于降压-升压原理的双相,无变压器的PV接口的单相单级[无额外的转换器用于升压或最大功率点跟踪(MPPT)]。该配置紧凑,并使用较少的组件。仅使用一个(未分割的)PV源和一个降压-升压电感器,并且在两个半周期之间共享,从而避免了不对称操作和参数失配问题。与现有拓扑相比,提供给电网的电流的总谐波失真和直流分量很低,并且符合IEEE 1547等标准。还简要概述了现有的无变压器,并网逆变器拓扑。结果表明,与分离式PV源拓扑相比,拟议的配置在MPPT和阵列利用率方面更为有效。在不连续导通模式下进行了逆变器的设计和分析。给出了仿真和实验结果。

著录项

  • 作者

    PATEL H; AGARWAL V;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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