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All SiC Grid-Connected PV Supply with HF Link MPPT Converter: System Design Methodology and Development of a 20 kHz, 25 kVA Prototype

机译:所有SIC网格连接的PV电源带HF Link MPPT转换器:系统设计方法和开发20 kHz,25 kVa原型

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摘要

Design methodology and implementation of an all SiC power semiconductor-based, grid-connected multi-string photovoltaic (PV) supply with an isolated high frequency (HF) link maximum power point tracker (MPPT) have been described. This system configuration makes possible the use of a simple and reliable two-level voltage source inverter (VSI) topology for grid connection, owing to the galvanic isolation provided by the HF transformer. This topology provides a viable alternative to the commonly used non-isolated PV supplies equipped with Si-based boost MPPT converters cascaded with relatively more complex inverter topologies, at competitive efficiency figures and a higher power density. A 20 kHz, 25 kVA prototype system was designed based on the dynamic model of the multi-string PV panels obtained from field tests. Design parameters such as input DC link capacitance, switching frequencies of MPPT converter and voltage source inverter, size and performance of HF transformer with nanocrystalline core, DC link voltage, and LCL filter of the VSI were optimized in view of the site dependent parameters such as the variation ranges of solar insolation, module surface temperature, and grid voltage. A modified synchronous reference frame control was implemented in the VSI by applying the grid voltage feedforward to the reference voltages in abc axes directly, so that zero-sequence components of grid voltages are taken into account in the case of an unbalanced grid. The system was implemented and the proposed design methodology verified satisfactorily in the field on a roof-mounted 23.7 kW multi-string PV system.
机译:已经描述了设计方法和实现的所有SiC功率半导体的网格连接的多串光伏(PV),具有隔离的高频(HF)链路最大功率点跟踪器(MPPT)。由于HF变压器提供的电流隔离,该系统配置使得可以使用用于网格连接的简单可靠的双电压源逆变器(VSI)拓扑。这个拓扑提供一种可行的替代配备有具有相对更复杂的逆变器拓扑结构,具有竞争力的效率图和更高的功率密度级联基于Si的升压转换器MPPT常用非隔离光伏用品。基于从现场测试获得的多弦PV面板的动态模型设计了20 kHz,25 kVA原型系统。设计参数,如输入直流母线电容,开关MPPT转换器和电压源逆变器,大小和纳米结晶核,DC链路电压,并且VSI的LCL滤波器高频变压器的性能的频率鉴于站点相关的参数如进行了优化太阳能缺失,模块表面温度和电网电压的变化范围。通过直接将电网电压馈送到ABC轴中的参考电压,在VSI中实现了修改的同步参考帧控制,从而在不平衡网格的情况下考虑了网格电压的零序分量。该系统是实施的,并在屋顶安装的23.7kW多弦PV系统上令人满意地核实设计方法。

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