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MPPT Scheme for a PV-Fed Single-Phase Single-Stage Grid-Connected Inverter Operating in CCM With Only One Current Sensor

机译:在仅具有一个电流传感器的CCM中运行的PV馈电单相单级并网逆变器的MPPT方案

摘要

The cost and efficiency of a photovoltaic (PV)-based grid-connected system depends upon the number of components and stages involved in the power conversion. This has led to the development of several single-stage configurations that can perform voltage transformation, maximum power point tracking (MPPT), inversion, and current shaping-all in one stage. Such configurations would usually require at least a couple of current and voltage sensors and a relatively complex control strategy. With a view to minimize the overall cost and control complexity, this paper presents a novel MPPT scheme with reduced number of sensors. The proposed scheme is applicable to any single-stage, single-phase grid-connected inverter operating in continuous conduction mode (CCM). The operation in CCM is desirable as it drastically reduces the stress on the components. Unlike other MPPT methods, which sense both PV array's output current and voltage, only PV array's output voltage is required to be sensed to implement MPPT. Only one current sensor is used for shaping the buck-boost inductor current as well as for MPPT. The information about power output of the array is obtained indirectly from array's voltage and the inductor current amplitude. Detailed analysis and the flowchart of the algorithm for the proposed scheme are included. Simulation and experimental results are also presented to highlight the usefulness of the scheme.
机译:基于光伏(PV)的并网系统的成本和效率取决于功率转换中涉及的组件和级数。这导致了几种单级配置的开发,这些配置可以在一个阶段中完成电压转换,最大功率点跟踪(MPPT),反相和电流整形。这样的配置通常将需要至少一对电流和电压传感器以及相对复杂的控制策略。为了最大程度地降低总成本和控制复杂度,本文提出了一种新型的MPPT方案,减少了传感器的数量。提出的方案适用于以连续传导模式(CCM)运行的任何单级,单相并网逆变器。 CCM中的操作是可取的,因为它可以大大降低组件上的压力。与其他同时感测PV阵列的输出电流和电压的MPPT方法不同,仅需要感测PV阵列的输出电压即可实现MPPT。仅使用一个电流传感器来调整降压-升压电感器电流以及MPPT。有关阵列功率输出的信息可从阵列的电压和电感器电流幅度间接获得。包括所提出方案的算法的详细分析和流程图。仿真和实验结果也被提出来突出该方案的实用性。

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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