{"title":"采用统一潮流控制器(UPFC)的SulselBarTeng互联系统性能分析","authors":"I. Jaya, Z. Zainuddin, Upa S. Yustinus","doi":"10.1109/MICEEI.2014.7067305","DOIUrl":null,"url":null,"abstract":"The operation PLTU Jeneponto 2×125 MW and PLTU Barru 2×50 MW, as well as the transmission line of middle lane that connects GI Sidrap - GI Maros - GI Sungguminasa, is the right solution to overcome weaknesses Sulselbar system that is the bottle neck. The entry of PLTA Poso 2 with power capacity 3×65MW into the power system of south of West Sulawesi (Sulselbar) through the GI Palopo, then the system of SulselBar is in a state surplus of power and develop into a sulselBarTeng (south western and central Sulawesi) system. This situation makes PLN as a manufacturer of electric energy, optimizing the operation of the plant in the system, where plants with fuel largely deactivated and plants with low operating costs in maximized Plant operation optimization policy, of course, would affect the distribution of power in certain plants with a fairly long distance line, so that power losses in line and voltage drop on certain buses can not be avoided. This research analyzes the performance of interonnection system of SulselBarTeng by placing a unified power flow controller (UPFC) on one of the transmission line, where the analysis method is done through simulation using NEPLAN software. Simulation results are obtained without UPFC showed reactive power losses are very large, the voltage drop occurs on the bus latuppa (28) 275 kV. The results of the simulation by placing UPFC on line 13-26 shows that the performance of the system increases, power losses decreased, the voltage on the bus latuppa (28) increases and generating capacity also increased.","PeriodicalId":285063,"journal":{"name":"2014 Makassar International Conference on Electrical Engineering and Informatics (MICEEI)","volume":"44 22","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2014-11-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Performance analysis of interconnection sistem of SulselBarTeng using unified power flow controller (UPFC)\",\"authors\":\"I. Jaya, Z. Zainuddin, Upa S. 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引用次数: 0
摘要
PLTU Jeneponto 2×125 MW和PLTU Barru 2×50 MW的运营,以及连接GI Sidrap - GI Maros - GI Sungguminasa的中线传输线,是克服Sulselbar系统的瓶颈弱点的正确解决方案。具有发电能力3×65MW的PLTA Poso 2通过GI Palopo进入西苏拉威西岛南部(Sulselbar)的电力系统后,Sulselbar系统处于电力过剩状态,发展为sulselBarTeng(苏拉威西岛西南部和中部)系统。这种情况使得PLN作为电能的制造商,优化系统中工厂的运行,其中燃料大部分停用的工厂和运行成本较低的工厂在最大化的工厂运行优化政策中,当然会影响某些线路较长的工厂的电力分配,从而无法避免线路上的功率损耗和某些母线上的电压下降。本研究通过在其中一条传输线上放置统一潮流控制器(UPFC)来分析SulselBarTeng互连系统的性能,并通过NEPLAN软件进行仿真分析。仿真结果表明,在没有UPFC的情况下,无功功率损耗非常大,母线上出现电压降(28)275 kV。将UPFC放置在13-26线上的仿真结果表明,系统性能提高,功率损耗降低,母线latuppa(28)上的电压增加,发电量也增加。
Performance analysis of interconnection sistem of SulselBarTeng using unified power flow controller (UPFC)
The operation PLTU Jeneponto 2×125 MW and PLTU Barru 2×50 MW, as well as the transmission line of middle lane that connects GI Sidrap - GI Maros - GI Sungguminasa, is the right solution to overcome weaknesses Sulselbar system that is the bottle neck. The entry of PLTA Poso 2 with power capacity 3×65MW into the power system of south of West Sulawesi (Sulselbar) through the GI Palopo, then the system of SulselBar is in a state surplus of power and develop into a sulselBarTeng (south western and central Sulawesi) system. This situation makes PLN as a manufacturer of electric energy, optimizing the operation of the plant in the system, where plants with fuel largely deactivated and plants with low operating costs in maximized Plant operation optimization policy, of course, would affect the distribution of power in certain plants with a fairly long distance line, so that power losses in line and voltage drop on certain buses can not be avoided. This research analyzes the performance of interonnection system of SulselBarTeng by placing a unified power flow controller (UPFC) on one of the transmission line, where the analysis method is done through simulation using NEPLAN software. Simulation results are obtained without UPFC showed reactive power losses are very large, the voltage drop occurs on the bus latuppa (28) 275 kV. The results of the simulation by placing UPFC on line 13-26 shows that the performance of the system increases, power losses decreased, the voltage on the bus latuppa (28) increases and generating capacity also increased.