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Technical feasibility study of Voltage Optimization Unit:Technical evaluation of distribution transformer with single phase on load tap changer for increasing hosting capacity of photovoltaic

机译:电压优化单元技术可行性研究:单相有载分接开关配电变压器技术评估,提高光伏发电容量

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摘要

This report provides an analysis on the benefits of a transformer with on load tap chang-ers on each phase that can be applied in the distribution system to accommodate more renewable generations such as photovoltaic power. The main purpose of this research is to verify whether power distribution transformer with OLTC per phase is necessary and valuable. The main conclusion is that power distribution transformer with OLTC control on each phase can significantly improve the PV hosting capacity in the analyzed unbal-anced scenarios. To investigate the verification problem, a simulation study is performed using the soft-wares DigSilent PowerFactory and Matlab. In this simulation study, a real low voltage network from Dong Eldistribution is modeled in Powerfactory. The measured data of the real low voltage network is analyzed and the resulting loading profiles including active and reactive power are used as load basics for the analysis. In term of PV genera-tion profiles, a realistic PV output power is assumed. Four relevant indicies such as phase neutral voltage, netural potential voltage, unbalanced factor (VUF), and power losses are evaluated in the present study. The simulation tests include two network layouts, considering a base case (passive net-work) and an active layout considering the PV integration. For each case, we compared the results of three scenarios firstly operating the network without OLTC transformer, then enabling the OLTC synchronously on three phases and finally with the OLTC act-ing independently on each phase. The simulations show that in the PV case the system hosting capacity reaches up to 105 kW for a very unbalance PV phase connection sce-nario (50% of the PV is connected on phase a and 50% of the PV is connected on phase b) and 210 kW for a less unbalanced PV phase connection (50% of the PV is connected on phase a, 30% of the PV is connected on phase b and 20% of the PV is connected on phase c), with the regulation of three single phase OLTC.
机译:该报告分析了在每相上都装有有载分接开关的变压器的好处,该变压器可应用于配电系统中,以容纳更多可再生能源,例如光伏发电。这项研究的主要目的是验证每相带有OLTC的配电变压器是否必要且有价值。主要结论是,在分析的非平衡情况下,每相具有OLTC控制的配电变压器可以显着提高PV的承载能力。为了调查验证问题,使用软件DigSilent PowerFactory和Matlab进行了仿真研究。在此仿真研究中,在Powerfactory中对来自Dong Eldistribution的真实低压网络进行了建模。分析实际低压网络的测量数据,并将所得的负载曲线(包括有功功率和无功功率)用作分析的负载基础。根据光伏发电曲线,假定了实际的光伏输出功率。在本研究中评估了四个相关指标,例如相中性电压,神经电势电压,不平衡因子(VUF)和功率损耗。模拟测试包括两个网络布局,其中考虑了基本情况(无源网络),而有源布局则考虑了PV集成。对于每种情况,我们都比较了三种情况的结果:首先在没有OLTC变压器的情况下运行网络,然后在三个阶段同步启用OLTC,最后在每个阶段使OLTC独立起作用。仿真显示,在光伏情况下,对于非常不平衡的光伏相连接场景,系统承载能力高达105 kW(50%的PV连接在a相上,而50%的PV连接在b相上)对于不平衡的PV相连接,功率为210 kW(50%的PV连接在a相上,30%的PV连接在b相上,而20%的PV连接在c相上),调节为3单相OLTC。

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