{"title":"带谐波滤波器的静态无功补偿器在重工业中的应用","authors":"Nkululeko Motlanthe, L. Muremi","doi":"10.1109/ROBOMECH.2019.8704729","DOIUrl":null,"url":null,"abstract":"Utility companies use Flexible AC Transmission Systems (FACTS) to improve the power quality at load end closer to furnaces, steel plants and mining facilities in order to avoid the generating of reactive power through field excitation of generator as this reduces the efficiency of the power grid network. In this paper the focus is on application of static var compensator (SVC) with shunt filters on Waterval chrome mine network in order to improve the voltage level and reduce the total harmonic content within internal point of common coupling (IPCC) where nonlinear loads are connected. Power quality scans were performed with reference to the NRS 048 regulations. The network was modeled and analysed using the DIgSILENT Power Factory 2018 and a comparison was done using both results. The investigation provided evidence of compliant in terms of voltage harmonics and voltage compatibility levels at common point of coupling (PCC). Reactive power over compensation was noted due to nonadaptive absolute fixed capacitor banks. The results were coherent with the simulated mine network, but a significant voltage drops downstream at IPCC where nonlinear loads are connected caused deviation in harmonics with reference to IEEE 519 standard. In addition, it was discovered that the more rectifier nonlinear devices connected to a load bus, the more the voltage total harmonic distortion in which mitigation was implemented using shunt filters. The significant voltage drop that was noted from the simulated network downstream was improved using static var system.","PeriodicalId":344332,"journal":{"name":"2019 Southern African Universities Power Engineering Conference/Robotics and Mechatronics/Pattern Recognition Association of South Africa (SAUPEC/RobMech/PRASA)","volume":"1 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Application of static var compensator with harmonic filters in the heavy industry\",\"authors\":\"Nkululeko Motlanthe, L. 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The investigation provided evidence of compliant in terms of voltage harmonics and voltage compatibility levels at common point of coupling (PCC). Reactive power over compensation was noted due to nonadaptive absolute fixed capacitor banks. The results were coherent with the simulated mine network, but a significant voltage drops downstream at IPCC where nonlinear loads are connected caused deviation in harmonics with reference to IEEE 519 standard. In addition, it was discovered that the more rectifier nonlinear devices connected to a load bus, the more the voltage total harmonic distortion in which mitigation was implemented using shunt filters. 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引用次数: 0
摘要
公用事业公司使用柔性交流输电系统(FACTS)来改善靠近熔炉、钢铁厂和采矿设施的负载端电能质量,以避免通过发电机励磁产生无功功率,因为这降低了电网的效率。本文研究了带并联滤波器的静态无功补偿器(SVC)在水谷铬矿电网中的应用,以提高电网电压水平,降低连接非线性负载的共耦内点的总谐波含量。电能质量扫描参照NRS 048法规进行。使用DIgSILENT Power Factory 2018对该网络进行了建模和分析,并使用两种结果进行了比较。调查提供了符合的证据,在电压谐波和电压兼容水平在共同点的耦合(PCC)。由于非自适应绝对固定电容器组,无功功率过补偿被注意到。结果与模拟矿井网络一致,但在IPCC下游连接非线性负载时,电压下降明显,导致谐波偏离IEEE 519标准。此外,还发现负载母线上连接的整流非线性器件越多,采用并联滤波器进行抑制的电压总谐波畸变就越大。采用静态无功系统改善了模拟电网下游明显的电压降。
Application of static var compensator with harmonic filters in the heavy industry
Utility companies use Flexible AC Transmission Systems (FACTS) to improve the power quality at load end closer to furnaces, steel plants and mining facilities in order to avoid the generating of reactive power through field excitation of generator as this reduces the efficiency of the power grid network. In this paper the focus is on application of static var compensator (SVC) with shunt filters on Waterval chrome mine network in order to improve the voltage level and reduce the total harmonic content within internal point of common coupling (IPCC) where nonlinear loads are connected. Power quality scans were performed with reference to the NRS 048 regulations. The network was modeled and analysed using the DIgSILENT Power Factory 2018 and a comparison was done using both results. The investigation provided evidence of compliant in terms of voltage harmonics and voltage compatibility levels at common point of coupling (PCC). Reactive power over compensation was noted due to nonadaptive absolute fixed capacitor banks. The results were coherent with the simulated mine network, but a significant voltage drops downstream at IPCC where nonlinear loads are connected caused deviation in harmonics with reference to IEEE 519 standard. In addition, it was discovered that the more rectifier nonlinear devices connected to a load bus, the more the voltage total harmonic distortion in which mitigation was implemented using shunt filters. The significant voltage drop that was noted from the simulated network downstream was improved using static var system.