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Probing the Impact of Reduced DC Capacitor Size in Variable Speed Drive Loads on Voltage Stability of the Distribution Network at High PV Penetration

机译:探测DC电容器尺寸在变速驱动载荷上降低电容器尺寸的影响,高PV渗透下配电网电压稳定性

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The Variable Speed Drives (VSD) are anticipated to replace the Induction Motors (IM) by 50%, in 2020, in developed cities of Europe [1]. Therefore, it is essential to incorporate VSD loads while analyzing voltage stability studies in the distribution network with high PV penetration. The collective load response from VSD loads tend to slow the rate of change of node voltages of distribution system, during the PV ramping events. However, this dynamic load characteristic of VSD is dependent on its capacitor size. Meanwhile, there is trend for reducing the capacitor size in VSD load at equipment level. Thus, this paper investigates the impact of reducing DC capacitor size in VSD load, on voltage stability of distribution system during PV ramping events. For the investigation, the paper involves United Kingdom General Distribution System (UKGDS) where load is modeled with combination of static load, IM, and VSD. It is determined that the maximum PV penetration reduces from 80% to 50% when the capacitor size in VSD is lowered from 360 μF/kW to 25μF/kW respectively. Furthermore, the increased VSD penetration could delay and even avert the voltage collapse from PV ramping events during grid contingency condition. It is revealed that the minimum VSD penetration required to avert instability during such condition, even at 100% PV penetration, increases from 50% to 65% when the capacitor size of VSD is reduced from 360 μF/kW to 25μF/kW respectively.
机译:预计变速驱动器(VSD)预计将在欧洲发达的城市中更换2020年2020年50 %的感应电机(IM)。因此,必须在具有高PV渗透的分配网络中分析电压稳定性研究的同时结合VSD负载。来自VSD负载的集体负载响应倾向于在PV​​斜坡事件期间减缓分配系统节点电压的变化率。然而,VSD的这种动态负载特性取决于其电容尺寸。同时,有趋势在设备级别降低VSD负载中的电容器尺寸。因此,本文研究了降低DC电容器尺寸在VSD负载中的影响,PV斜坡事件中分配系统的电压稳定性。对于调查,本文涉及英国一般分配系统(UKGDS),其中负载与静态负载,IM和VSD的组合建模。当VSD中的电容器大小分别从360μF/ kW降低到25μF/ kw时,确定最大PV渗透率从80 %到50 %降低。此外,VSD渗透的增加可能会延迟,甚至在网格偶然条件期间避免从PV斜坡事件的电压塌陷。据透露,当在这种情况下,即使在100 %PV渗透期间,避免不稳定性所需的最小VSD渗透率,当VSD的电容器尺寸从360μF/ kW减少到25μF/ kW时,即使在100 %PV渗透率上也会增加50 %至65 %分别。

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