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Impact of reactive power injection outside feed-in hours on the reliability of photovoltaic inverters

机译:馈电时段外无功注入对光伏逆变器可靠性的影响

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Current energy paradigm of mixed renewables seems to urgently require reactive power provision at various feed-in points of the utility grid. Photovoltaic (PV) inverters are able to provide reactive power in a decentralized manner at the grid-connection point even outside active power feed-in operation, especially at night. This serves as a motivation for utilizing the PV inverters at night for reactive power compensation. Thus, a detailed analysis on the impact of reactive power injection by PV inverters outside feed-in operation on the thermal performance and also the reliability is performed in this paper. A thermal analysis based on the mission profile (i.e. solar irradiance and ambient temperature) has been incorporated, so as to determine the additional temperature rise in the components (IGBTs and diodes) outside feed-in operation for different values of reactive power injection. Consequently, the analysis enables the translation from long-term mission profiles to device thermal loading, considering the operation at night. An analytical lifetime model is then used for lifetime quantization based on the Palgrem Miner rule. Thereafter, considering the lifetime reduction of the PV inverter for different values of reactive power injection an assessment of the economic impacts is made. This analysis can be useful in choosing between conventional reactive power devices or PV inverters for injecting reactive power to the grid.
机译:混合可再生能源的当前能源范例似乎迫切需要在公用电网的各个供电点提供无功功率。光伏(PV)逆变器即使在有功功率输入操作之外(尤其是在夜间),也能够在电网连接点以分散方式提供无功功率。这是在晚上利用光伏逆变器进行无功功率补偿的动机。因此,本文详细分析了光伏逆变器在馈电操作之外注入无功功率对热性能以及可靠性的影响。结合了基于任务曲线(即太阳辐照度和环境温度)的热分析,以确定对于无功功率注入的不同值,在馈电操作之外的组件(IGBT和二极管)中的附加温升。因此,考虑到夜间运行情况,该分析可以将长期任务概况转换为设备热负荷。然后根据Palgrem Miner规则将分析寿命模型用于寿命量化。此后,考虑到针对无功功率注入的不同值的PV逆变器的寿命缩短,对经济影响进行了评估。该分析对于在常规无功功率设备或PV逆变器之间进行选择以向电网注入无功功率很有用。

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