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A Double Grounded Transformerless Photovoltaic Array String Inverter with Film Capacitors and Silicon Carbide Transistors.

机译:具有薄膜电容器和碳化硅晶体管的双接地无变压器光伏阵列串式逆变器。

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摘要

A new photovoltaic (PV) array power converter circuit is presented. The salient features of this inverter are: transformerless topology, grounded PV array, and only film capacitors. The motivations are to reduce cost, eliminate leakage ground currents, and improve reliability. The use of Silicon Carbide (SiC) transistors is the key enabling technology for this particular circuit to attain good efficiency.;Traditionally, grid connected PV inverters required a transformer for isolation and safety. The disadvantage of high frequency transformer based inverters is complexity and cost. Transformerless inverters have become more popular recently, although they can be challenging to implement because of possible high frequency currents through the PV array's stay capacitance to earth ground. Conventional PV inverters also typically utilize electrolytic capacitors for bulk power buffering. However such capacitors can be prone to decreased reliability.;The solution proposed here to solve these problems is a bi directional buck boost converter combined with half bridge inverters. This configuration enables grounding of the array's negative terminal and passive power decoupling with only film capacitors.;Several aspects of the proposed converter are discussed. First a literature review is presented on the issues to be addressed. The proposed circuit is then presented and examined in detail. This includes theory of operation, component selection, and control systems. An efficiency analysis is also conducted. Simulation results are then presented that show correct functionality. A hardware prototype is built and experiment results also prove the concept. Finally some further developments are mentioned.;As a summary of the research a new topology and control technique were developed. The resultant circuit is a high performance transformerless PV inverter with upwards of 97% efficiency.
机译:提出了一种新的光伏(PV)阵列功率转换器电路。该逆变器的显着特点是:无变压器拓扑,接地的光伏阵列和仅薄膜电容器。其动机是降低成本,消除接地漏电流并提高可靠性。碳化硅(SiC)晶体管的使用是使该特定电路获得良好效率的关键使能技术。传统上,并网PV逆变器需要变压器以实现隔离和安全性。基于高频变压器的逆变器的缺点是复杂性和成本。无变压器逆变器最近变得越来越流行,尽管由于通过光伏阵列的保持电容流到大地的高频电流可能难以实现,所以它们的实现面临挑战。常规的PV逆变器通常还利用电解电容器进行大功率缓冲。然而,这样的电容器可能易于降低可靠性。此处提出的解决这些问题的解决方案是将双向降压升压转换器与半桥逆变器结合在一起。这种配置能够使阵列的负极端子接地,并且仅通过薄膜电容器就能实现无源功率去耦。;讨论了所提出转换器的几个方面。首先,对要解决的问题进行文献综述。然后提出并详细研究了所建议的电路。这包括操作理论,组件选择和控制系统。还进行了效率分析。然后呈现仿真结果,显示正确的功能。构建了硬件原型,实验结果也证明了这一概念。最后提出了一些进一步的发展。作为研究的总结,开发了一种新的拓扑和控制技术。最终的电路是高效无变压器PV逆变器,效率高达97%。

著录项

  • 作者

    Breazeale, Lloyd C.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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