SVC对220kV电力系统电能质量的改善

Julio Fredy Chura Acero, Wilhem R. Limachi Viamonte, O. C. Velasquez, W. O. P. Pareja
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引用次数: 4

摘要

今天,SVC(静态无功补偿器)有助于通过晶闸管控制负载中的谐波,导致电压波动。为此,本研究的目的是确定以天然气220千伏母线运行的圣罗莎热电厂TG-8机组的能源质量参数;通过基于OSINERGMIN和cos - sinac的测量和计算来确定。程序,天然气运行时TG-8发电机组不同负荷的闪变、电压波动和谐波所对应的值。使用的方法是演绎,描述-解释;在秘鲁,使用晶闸管控制的SVC是一项新提议。SVC由晶闸管控制。它们可以改善线路中的谐波,并在很大程度上从根本上稳定张力的波动,这些波动与电力服务的质量和提高系统的可靠性有关。晶闸管控制系统通过ATP / EMTP的暂态分析控制系统(TACS)实现。为了进行分析和仿真,本文考虑了一条220 kV线路,其中有两台功率为105.8 MW的UTI品牌航空型涡轮机,一台功率为123.9 MW的西屋燃气轮机和一台功率为199.8 MW的西门子燃气轮机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power Quality Improvement with SVC in a Power System of 220kV
Today the SVC (Static Var Compensator) helps to control by thyristors at the harmonics that are in the load, causing voltage fluctuations. For that the objective of this study is to determine the energy quality parameters in the TG-8 unit of the Santa Rosa Thermal Power Plant operating with Natural Gas 220 kV bus; to determine by means of measurements and calculations based on the OSINERGMIN and COES-SINAC. Procedure, the value corresponding to the flickers, voltage fluctuations and harmonics in different loads of the TG-8 generation unit, operating with Natural Gas. The method used is deductive, descriptive-explanatory; the use of thyristor-controlled SVC is a new proposal in Peru. The SVC's controlled by thyristors. They allow to improve the harmonics in the line and to stabilize to a great extent the fluctuations of tension fundamentally, those that have to do with the quality of the electrical service and increasing the reliability of the system. The thyristor control system is implemented through TACS (Transient Analysis Control Systems) of ATP / EMTP. For analysis and simulations, this article considers a 220 kV line with two units of UTI brand aviation-type turbines with a power of 105.8 MW, a Westinhouse gas turbine with a power of 123.9 MW and a Siemens brand gas turbine of 199.8 MW.
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