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Thermal Optimized Operation of the Single-Phase Full-Bridge PV Inverter under Low Voltage Ride-Through Mode

机译:低压穿越模式下单相全桥光伏逆变器的热优化运行

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The efficiency of 98% has been reported on transformer-less photovoltaic (PV) inverters and the penetration of grid-connected PV systems is booming as well. In the future, the PV systems are expected to contribute to the grid stability by means of low voltage ride-through operation and grid support. At the same time, the target of a long service time (25 years or more) imposes new challenges to grid-connected transformer-less PV systems. Achieving more reliable PV inverters is of intense interest in recent research. As one of the most critical stresses that induce failures, the thermal stresses on the power devices of a single-phase full-bridge PV inverter are analyzed in different operational modes in this paper. The low voltage grid condition is specially taken into account in this paper. The analysis is demonstrated by a 3 kW single-phase full-bridge grid-connected PV system by simulations. The mean junction temperature and the junction temperature fluctuation of the power devices can be reduced by properly injecting reactive current into the grid under grid faults, and consequently, the overall lifetime of the entire PV system is improved.
机译:据报道,无变压器光伏(PV)逆变器的效率达到98%,并网光伏系统的普及率也在迅速提高。未来,预计光伏系统将通过低压穿越运行和电网支持来为电网稳定做出贡献。同时,较长使用寿命(25年或更长时间)的目标对并网的无变压器光伏系统提出了新的挑战。在最近的研究中,实现更可靠的光伏逆变器备受关注。作为引起故障的最关键的应力之一,本文分析了在不同工作模式下单相全桥光伏逆变器功率器件上的热应力。本文特别考虑了低压电网条件。通过仿真,通过一个3 kW单相全桥并网光伏系统演示了该分析。通过在电网故障下向电网中适当注入无功电流,可以降低功率器件的平均结温和结温波动,因此,可以改善整个光伏系统的整体寿命。

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