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首页> 外文期刊>IEEE Transactions on Power Delivery >Two-Level Distributed Volt/Var Control Using Aggregated PV Inverters in Distribution Networks
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Two-Level Distributed Volt/Var Control Using Aggregated PV Inverters in Distribution Networks

机译:双层分布式Volt / Var控制使用分配网络中的聚合PV逆变器

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摘要

The penetration level of photovoltaic (PV) keeps increasing in modern distribution networks, which leads to various severe voltage limits violation problems. This article aims to aggregate and utilize the PV inverters for voltage regulation by a fully distributed two-level Volt/VAr control (VVC) scheme. In the lower-level VVC (real-time scale), the rooftop PV inverters are aggregated via consensus algorithms and then governed by droop controllers in medium-voltage networks. The droop controller adjusts the reactive power output of each PV aggregator in real-time from its dispatched value depending on the bus voltage variations. In the upper-level VVC (15-min timescale), the reactive power of PV aggregators is dispatched for power loss minimization, where control signals are set as base values for PV aggregators. This problem is formulated as second-order cone programming and solved by the alternating direction method of multipliers. The simulation results demonstrate the effectiveness of the proposed method in both short-term and long-term scenarios with different system scales.
机译:光伏(PV)的渗透水平在现代分销网络中不断增加,这导致各种严重的电压限制违规问题。本文旨在通过完全分布的两电平伏/瓦控制(VVC)方案来聚合和利用PV逆变器进行电压调节。在较低级别的VVC(实时刻度)中,屋顶PV逆变器通过共识算法聚集,然后由中压网络中的下垂控制器控制。根据总线电压变化,下垂控制器实时地从其调度值调整每个PV聚合器的无功功率输出。在上层VVC(15分钟时间尺度)中,调度PV聚合器的无功功率用于功率损耗最小化,其中控制信号被设置为PV聚合器的基本值。该问题被制定为二阶锥编程,并通过乘法器的交替方向方法解决。模拟结果展示了具有不同系统尺度的短期和长期情景中所提出的方法的有效性。

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