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Voltage regulation in LV grids by coordinated volt-var control strategies

机译:通过协调伏特控制策略对低压电网进行电压调节

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摘要

The increasing penetration level of photovoltaic (PV) power generation in low voltage (LV) networks results in voltage rise issues, particularly at the end of the feeders. In order to mitigate this problem, several strategies, such as grid reinforcement, transformer tap change, demand-side management, active power curtailment, and reactive power optimization methods, show their contribution to voltage support, yet still limited. This paper proposes a coordinated volt-var control architecture between the LV distribution transformer and solar inverters to optimize the PV power penetration level in a representative LV network in Bornholm Island using a multi-objective genetic algorithm. The approach is to increase the reactive power contribution of the inverters closest to the transformer during overvoltage conditions. Two standard reactive power control concepts, cosΦ(P) and Q(U), are simulated and compared in terms of network power losses and voltage level along the feeder. As a practical implementation, a reconfigurable hardware is used for developing a testing platform based on real-time measurements to regulate the reactive power level. The proposed testing platform has been developed within PVNET.dk project, which targets to study the approaches for large PV power integration into the network, without the need of reinforcement.
机译:低压(LV)网络中光伏(PV)发电的渗透水平不断提高,导致出现电压上升问题,尤其是在馈线末端。为了缓解此问题,几种策略(例如,电网加强,变压器抽头变换,需求侧管理,有功功率削减和无功功率优化方法)显示出它们对电压支持的贡献,但仍然受到限制。本文提出了一种低压配电变压器和太阳能逆变器之间的协调电压-电压控制架构,以使用多目标遗传算法优化博恩霍尔姆岛代表性低压网络中的光伏功率渗透水平。该方法是在过压条件下增加最靠近变压器的逆变器的无功功率贡献。对两个标准无功功率控制概念cosΦ(P)和Q(U)进行了仿真,并根据网络功率损耗和沿馈线的电压水平进行了比较。作为实际的实现,可重构硬件用于基于实时测量来开发测试平台,以调节无功功率水平。拟议的测试平台已在PVNET.dk项目中开发,旨在研究无需增强即可将大型PV功率集​​成到网络中的方法。

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