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Performance of utility interconnected photovoltaic inverters operating beyond typical modes of operation

机译:公用互联光伏逆变器的性能超出典型运行模式

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The high penetration of utility interconnected photovoltaic (PV) inverters can affect the utility at the point of common coupling. Today's utility interconnection standards are evolving to allow voltage and frequency support, and voltage and frequency ride-through capability. With multi-MW-sized PV plants and multitudes of small commercial and residential systems coming online each year, the interconnection standards are allowing distributed energy resource equipment to provide reactive power to supplement existing voltage-regulating devices and ride-through voltage and frequency anomalies. These new interconnection requirements, coupled with the high dc-to-ac ratios, are becoming more common with declining PV module costs and are changing the modes of operation for utility-interconnected PV systems. This report investigates the effects these modes of operation have on the inverter performance, array utilization, and power quality while focusing on conversion efficiency.
机译:公用事业互连光伏(PV)逆变器的高渗透率可能会影响公用耦合点的公用事业。当今的公用事业互连标准正在发展,以提供电压和频率支持以及电压和频率穿越能力。每年都有几兆瓦级的光伏电站以及许多小型商业和住宅系统上线,互连标准允许分布式能源设备提供无功功率,以补充现有的调压设备以及穿越电压和频率异常。随着光伏模块成本的下降,这些新的互连要求以及高的直流/交流比变得越来越普遍,并且正在改变公用事业互连光伏系统的运行模式。该报告调查了这些工作模式对逆变器性能,阵列利用率和电源质量的影响,同时着重于转换效率。

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