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Vienna converter fed two stage grid connected photovoltaic pumping system

机译:维也纳变流器馈电两级并网光伏抽水系统

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A topology of Vienna converter fed two stage solar water pumping system interfaced with three phase grid supply is proposed. The system uses a Vienna converter, a boost converter and a voltage source inverter to drive an induction motor (IM) coupled centrifugal pump. The proposed system helps in eliminating the loss of water discharge due to varying solar insolation in standalone solar water pumping systems. The IM is controlled using simple scalar control while the maximum power point tracking is achieved using the incremental conductance technique. The input power quality is improved by the constant frequency switching of the Vienna converter. Various modes of operation on the availability of active power sources are identified and the photovoltaic pumping system (PVP) is modelled and its performance is simulated in detail. The system indices at starting, steady state and with varying solar insolations are analyzed. The simulated results show the feasibility of the proposed system in grid connected locations.
机译:提出了与三相电网相连的维也纳变流器馈电两级太阳能抽水系统的拓扑结构。该系统使用维也纳转换器,升压转换器和电压源逆变器来驱动感应电动机(IM)耦合的离心泵。所提出的系统有助于消除由于独立的太阳能抽水系统中日照强度的变化而造成的排水损失。 IM使用简单的标量控制进行控制,同时使用增量电导技术实现最大功率点跟踪。维也纳转换器的恒定频率开关可改善输入功率质量。确定了关于有功电源可用性的各种操作模式,并对光伏泵系统(PVP)进行了建模,并对其性能进行了详细模拟。分析了在启动,稳定状态和日照变化的情况下的系统指标。仿真结果表明了该系统在并网位置的可行性。

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