智能电网的现代无功补偿

D. Ilişiu, Elena-Daniela Dinu
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引用次数: 11

摘要

静态无功补偿器(SVC)是柔性交流输电系统(FACTS)系列中的一种设备,它使用电力电子技术来控制电网上的潮流。SVC通过控制向电力系统注入或从电力系统吸收的无功功率来调节其终端的电压。当系统电压较低时,SVC产生无功功率(SVC电容性)。当系统电压较高时,吸收无功功率(SVC感应)。无功功率的变化是通过开关连接在耦合变压器二次侧的三相电容器组和电感组来实现的。每个电容器组由三个晶闸管开关(晶闸管开关电容器或TSC)接通和关闭。电抗器要么是开关通断(晶闸管开关电抗器或TSR)或相位控制(晶闸管控制电抗器或TCR)。罗马尼亚国家电力系统面临的新挑战,即整合可再生能源的高发电量和NPS东南部风力发电的集中(约占发电厂装机容量的80%),决定了短时间内潮流的变化。因此,需要一个快速的电压电平调整,并适合于各自的NPS运行模式。本文研究了SVC、TCR模型对智能电网电能质量改善的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modern Reactive Power Compensation for Smart Electrical Grids
The Static Var Compensator (SVC) is a device of the Flexible AC Transmission Systems (FACTS) family using power electronics to control power flow on power grids. The SVC regulates voltage at its terminal by controlling the amount of reactive power injected into or absorbed from the power system. When system voltage is low, the SVC generates reactive power (SVC capacitive). When system voltage is high, it absorbs reactive power (SVC inductive). The variation of reactive power is performed by switching three-phase capacitor banks and inductor banks connected on the secondary side of a coupling transformer. Each capacitor bank is switched on and off by three thyristor switches (Thyristor Switched Capacitor or TSC). Reactors are either switched on-off (Thyristor Switched Reactor or TSR) or phase-controlled (Thyristor Controlled Reactor or TCR). The new challenges in the national romanian power system, namely the integration of very high electricity production from renewable sources and the concentration of wind power production in the South -East of the NPS (about 80% of the installed capacity in power plants) determines the change of power flows in short intervals time. Therefore, a fast voltage level adjustment is required and appropriate to the respective NPS mode of operation. In this paper, we present the influence of SVC, TCR model on the power quality improvement in smart electrical grids.
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