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Improved Reliability of Single-Phase PV Inverters by Limiting the Maximum Feed-in Power

机译:通过限制最大馈入功率提高单相光伏逆变器的可靠性

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摘要

Grid operation experiences have revealed the necessity to limit the maximum feed-in power from PV inverter systems under a high penetration scenario in order to avoid voltage and frequency instability issues. A Constant Power Generation (CPG) control method has been proposed at the inverter level. The CPG control strategy is activated only when the DC input power from PV panels exceeds a specific power limit. It enables to limit the maximum feed-in power to the electric grids and also to improve the utilization of PV inverters. As a further study, this paper investigates the reliability performance of the power devices (e.g. IGBTs) used in PV inverters with the CPG control under different feed-in power limits. A long-term mission profile (i.e. solar irradiance and ambient temperature) based stress analysis approach is extended and applied to obtain the yearly electrical and thermal stresses of the power devices, allowing a quantitative prediction of the power device lifetime. A study case on a 3 kW single-phase PV inverter has demonstrated the advantages of the CPG control in terms of improved reliability.
机译:电网运行经验表明,为了避免出现电压和频率不稳定问题,必须在高穿透率的情况下限制来自光伏逆变器系统的最大馈入功率。在逆变器级别上已经提出了恒定发电(CPG)控制方法。仅当来自光伏面板的直流输入功率超过特定功率限制时,才激活CPG控制策略。它可以限制向电网的最大馈电,还可以提高光伏逆变器的利用率。作为进一步的研究,本文研究了在不同馈入功率限制下采用CPG控制的PV逆变器中使用的功率器件(例如IGBT)的可靠性性能。扩展并应用了基于长期任务概况(即太阳辐照度和环境温度)的应力分析方法,并获得了功率设备的年度电应力和热应力,从而可以定量预测功率器件的使用寿命。以3 kW单相光伏逆变器为例的研究案例证明了CPG控制在提高可靠性方面的优势。

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