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Boost Inverter Topology with High-Frequency Link Transformer for PV Grid-Tied Applications

机译:用于光伏并网应用的带有高频链路变压器的升压逆变器拓扑

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This paper proposes a new topology for single-phase photovoltaic PV grid-tied applications. The whole system consists of a two-stage, high-frequency boost inverter cascaded by rectifier-inverter system. A single-phase high-frequency transformer is used to link both stages and provide galvanic isolation between the AC and DC sides. A single-stage high-frequency boost inverter (HFBI), in the first stage, boosts and converts the DC output voltage of the PV array to a high-frequency single-phase square waveform and achieves maximum power point tracking (MPPT). In the second stage, the rectifier-inverter system (RIS) interfaces HFBI to the grid. The proposed topology has many advantages such as increasing the inverter output voltage level, MPPT, high reliability, small size, and light weight. In addition, a proportional integral current control (PI) is used to inject a sinusoidal current into the grid at unity power factor. The proposed topology has been verified analytically using PSIM software and experimentally by using a laboratory prototype.
机译:本文提出了一种用于单相光伏PV并网应用的新拓扑。整个系统由整流器-逆变器系统级联的两级高频升压逆变器组成。单相高频变压器用于连接两个级,并在交流和直流侧之间提供电流隔离。在第一阶段,单级高频升压逆变器(HFBI)将PV阵列的DC输出电压升压并将其转换为高频单相方波,并实现最大功率点跟踪(MPPT)。在第二阶段,整流器-逆变器系统(RIS)将HFBI连接到电网。所提出的拓扑具有许多优点,例如增加了逆变器输出电压电平,MPPT,高可靠性,小尺寸和重量轻。另外,比例积分电流控制(PI)用于以单位功率因数将正弦电流注入电网。拟议的拓扑已使用PSIM软件进行了分析验证,并通过实验室原型进行了实验验证。

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