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Development of innovative voltage control for distribution networks with high photovoltaic penetration

机译:为光伏渗透率高的配电网络开发创新的电压控制

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The voltage rise caused by photovoltaic (PV) power feed-in is one of the main network constraints limiting the PV penetration in distribution networks. In this paper, a local voltage control approach for PV inverters based on reactive power management is proposed and investigated into detail. Through a parametric study, various inverter settings are considered and compared for a real medium voltage network with a high PV penetration level and for which a demonstration is planned within the project MetaPV. The purpose of this work is to investigate the suitability of such control concepts to compensate the voltage rise caused by the PV power feed-in and to provide some guidance on the adjustment of the settings of such control mechanisms. For the assessment of the performance of the control concept with different settings, extensive load flow simulations have been performed for a voltage-dependent reactive power control (Q(V) characteristics) on the basis of 15-minute profiles. As a result, voltage time-series over a period of 1 year are obtained for each case and analysed into details. Apart from the voltage profiles, other features such as network losses and reactive energy import have been quantified because they are also of noticeable importance for network operators. The simulation results show that suitable settings are necessary to maintain the voltage within the prescribed limits. A comparison between the considered cases shows that reactive power control Q(V) with a power factor down to 0.9 is necessary to achieve satisfying results. The use of a dead-band is recommended for the voltage-dependent reactive power control in order to limit the losses and reactive energy import.
机译:光伏(PV)馈电引起的电压上升是限制配电网中PV渗透的主要网络约束之一。本文提出了一种基于无功功率管理的光伏逆变器局部电压控制方法,并对其进行了详细的研究。通过参数研究,考虑并比较了具有较高PV渗透水平的实际中压网络的各种逆变器设置,并计划在项目MetaPV中为其进行演示。这项工作的目的是研究此类控制概念是否适用于补偿由PV功率馈电引起的电压上升,并为调整此类控制机制的设置提供一些指导。为了评估具有不同设置的控制概念的性能,已基于15分钟的曲线对电压相关的无功功率控制(Q(V)特性)进行了广泛的潮流模拟。结果,每种情况下获得了一年的电压时间序列,并进行了详细分析。除电压曲线外,还对网络损耗和无功电能输入等其他特征进行了量化,因为它们对网络运营商也很重要。仿真结果表明,必须进行适当的设置才能将电压保持在规定的范围内。考虑情况之间的比较表明,功率因数低至0.9的无功功率控制Q(V)是获得令人满意的结果所必需的。建议对电压相关的无功功率控制使用死区,以限制损耗和无功电能输入。

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