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System Level Assessment of the Impact of High Penetration of PV Inverters with Grid Support Capability on Distribution Networks

机译:具有电网支持能力的光伏逆变器的高穿透性对配电网影响的系统级评估

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Power systems simulations using PSCAD have been performed to evaluate the impact to the distribution grid of high photovoltaic (PV) penetration. Voltage regulation at load nodes, feeder short-circuit currents and power losses have been analyzed for penetration level up to 60% and compared with a baseline case referring to as no PV. Results show that high PV penetration impacts residential area and non-residential area networks differently. Also, depending on the grid strength, the performance of the network is different. PV micro-inverters, in some cases, can prevent voltage excursion beyond tolerance limits however, they are more effective for power losses reduction. Overall, up to 15% in energy losses can be saved at very high penetration levels. Regarding the short-circuit levels no adjustment in the network infrastructures is required as the PV systems will have inconsequential contribution in feeder short-circuit currents.
机译:已经进行了使用PSCAD的电源系统仿真,以评估高光伏(PV)渗透对配电网的影响。已分析了负载节点处的电压调节,馈线短路电流和功率损耗,其穿透水平高达60%,并与基准情况(无PV)进行了比较。结果表明,高PV渗透对居民区和非居民区网络的影响不同。同样,根据电网强度,网络的性能也有所不同。光伏微型逆变器在某些情况下可以防止电压偏移超出容限,但是,它们对于降低功率损耗更有效。总体而言,以很高的渗透率可以节省多达15%的能量损失。关于短路水平,不需要对网络基础设施进行调整,因为光伏系统将对馈线短路电流产生无关紧要的影响。

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