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Coordinated Control of Distributed Energy Storage System With Tap Changer Transformers for Voltage Rise Mitigation Under High Photovoltaic Penetration

机译:高电压穿透下带抽头变换器的分布式储能系统的协调控制

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This paper proposes a coordinated control of distributed energy storage system (ESS) with traditional voltage regulators including the on-load tap changer transformers (OLTC) and step voltage regulators (SVR) to solve the voltage rise problem caused by the high photovoltaic (PV) penetration in the low-voltage distribution network. The main objective of this coordinated control is to relieve the tap changer transformer operation stress, shave the distribution network peak load and decrease the transmission and distribution resistive power losses under high solar power penetration. The proposed control method limits the energy storage depth of discharge in order to meet a more than ten-year cycle life. A benchmark distribution network model was developed in the Real Time Digital Simulator (RTDS) and the simulation results from the studied cases verified the proposed coordinated control strategy. The experimental implementation of proposed control algorithms were developed based on a power hardware-in-the-loop (PHIL) test bed with a 22 kWh ESS, a smart meter, Labview controller, and RTDS. The experimental results were consistent with those obtained from simulation study.
机译:本文提出了一种使用传统的电压调节器(包括有载分接开关变压器(OLTC)和步进电压调节器(SVR))进行分布式能量存储系统(ESS)的协调控制,以解决高光伏(PV)引起的电压上升问题渗透到低压配电网中。这种协调控制的主要目的是减轻分接开关变压器的工作压力,减少配电网络的峰值负载,并降低在高太阳能渗透率下的输配电电阻功率损耗。所提出的控制方法限制了放电的能量存储深度,以满足超过十年的循环寿命。在实时数字仿真器(RTDS)中开发了一个基准配电网模型,研究案例的仿真结果验证了所提出的协调控制策略。基于具有22 kWh ESS的功率硬件在环(PHIL)测试台,智能仪表,Labview控制器和RTDS,开发了建议的控制算法的实验实现。实验结果与模拟研究结果一致。

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