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首页> 外文期刊>Electric power systems research >Optimal OLTC voltage control scheme to enable high solar penetrations
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Optimal OLTC voltage control scheme to enable high solar penetrations

机译:最佳OLTC电压控制方案可实现高太阳穿透

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High solar Photovoltaic (PV) penetration on distribution systems can cause over-voltage problems. To this end, an Optimal Tap Control (OTC) method is proposed to regulate On-Load Tap Changers (OLTCs) by minimizing the maximum deviation of the voltage profile from 1 p.u. on the entire feeder. A secondary objective is to reduce the number of tap operations (TOs), which is implemented for the optimization horizon based on voltage forecasts derived from high resolution PV generation forecasts. A linearization technique is applied to make the optimization problem convex and able to be solved at operational timescales. Simulations on a PC show the solution time for one time step is only 1.1 s for a large feeder with 4 OLTCs and 1623 buses. OTC results are compared against existing methods through simulations on two feeders in the Californian network. OTC is firstly compared against an advanced rule-based Voltage Level Control (VLC) method. OTC and VLC achieve the same reduction of voltage violations, but unlike VLC, OTC is capable of coordinating multiple OLTCs. Scalability to multiple OLTCs is therefore demonstrated against a basic conventional rule-based control method called Autonomous Tap Control (ATC). Comparing to ATC, the test feeder under control of OTC can accommodate around 67% more PV without over-voltage issues. Though a side effect of OTC is an increase in tap operations, the secondary objective functionally balances operations between all OLTCs such that impacts on their lifetime and maintenance are minimized. (C) 2018 Elsevier B.V. All rights reserved.
机译:配电系统上较高的太阳能光伏(PV)渗透率可能导致过电压问题。为此,提出了一种最佳抽头控制(OTC)方法,通过最小化电压曲线与1 p.u的最大偏差来调节有载抽头变换器(OLTC)。在整个进纸器上。第二个目标是减少抽头操作(TO)的数量,此操作是根据从高分辨率PV发电预测得出的电压预测在优化范围内实现的。应用线性化技术使优化问题凸出并能够在操作时间尺度上解决。在PC上进行的仿真显示,对于具有4个OLTC和1623总线的大型馈线,一个时间步的求解时间仅为1.1 s。通过在加利福尼亚网络中的两个馈线上进行仿真,将OTC结果与现有方法进行比较。首先将OTC与基于规则的高级电压电平控制(VLC)方法进行比较。 OTC和VLC可以实现相同程度的电压违规降低,但是与VLC不同,OTC能够协调多个OLTC。因此,相对于称为“自治抽头控制(ATC)”的传统的基于规则的基本控制方法,证明了对多个OLTC的可伸缩性。与ATC相比,在OTC控制下的测试馈线可以容纳67%的PV,而不会出现过压问题。尽管OTC的副作用是抽头操作的增加,但是次要目标在功能上平衡了所有OLTC之间的操作,从而将对其寿命和维护的影响降至最低。 (C)2018 Elsevier B.V.保留所有权利。

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