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Design of a Non-Isolated Three-Switch Inverter for Renewable Energy Systems, Featuring Simple Circuit, Continuous Output Current, Common Ground and Buck-Boost Operation

机译:用于可再生能源系统的非隔离式三开关逆变器设计,具有简单的电路,连续的输出电流,公共接地和降压-升压操作

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Compared to the transformer isolated photovoltaic (PV) inverters, majority of the non-isolated PV inverters can achieve higher efficiency. In addition, they can have lower weight, cost and size. However, the non-isolated PV inverters must be designed carefully and properly to limit the common-mode leakage current between the PV arrays and the grid to a maximum allowable legal value.The output voltage of the PV arrays varies in a wide range with temperature, light, environment, and so on. Therefore, the PV inverters should adapt to the wide voltage range. In order to address the above two issues, this paper presents a novel non-isolated PV inverter for PV applications, which do not generate leakage current and have the buck-boost ability. The simple circuit topology and operation makes the proposed inverter a strong candidate for the renewable energy systems especially PV applications. Theoretical analysis followed by the experimental results is provided to verify the performance of the proposed inverter.
机译:与变压器隔离式光伏(PV)逆变器相比,大多数非隔离式PV逆变器可以实现更高的效率。另外,它们可以具有较低的重量,成本和尺寸。但是,非隔离式PV逆变器必须精心设计,以将PV阵列与电网之间的共模泄漏电流限制为最大允许合法值.PV阵列的输出电压会随温度变化很大,光线,环境等。因此,光伏逆变器应适应较宽的电压范围。为了解决以上两个问题,本文提出了一种新型的非隔离式光伏逆变器,用于光伏应用,该逆变器不产生泄漏电流并且具有降压-升压能力。简单的电路拓扑和操作使其成为可再生能源系统特别是光伏应用的理想选择。提供理论分析和实验结果,以验证所提出逆变器的性能。

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