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Placement Static Var Compensator (SVC) for Improving Voltage Stability Based on Sensitivity Analysis : A Case Study Of 500 KV Java-Bali Electrical Power System

机译:放置静态VAR补偿器(SVC),用于提高基于灵敏度分析的电压稳定性:500 kV Java-Bali电力系统的案例研究

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Demand for electricity is increasing rapidly, the consequence of this is a threat to the stability of the electrical system, one of which is the voltage stability. FACTS or Flexible Alternating Current Transmission System is electronic equipment that is able to regulate electric power transmission that can be used to overcome stability problems. This research will analyze the use of Static Var Compensator (SVC) as one of the equipment from FACTS to overcome the stability of the most critical buses by using the 500 kV Java-Bali electricity system using PSAT. Then the stability of the voltage is observed using the help of the PV curve which can show the value of the voltage conditions in each operating condition. SVC installation on the Java-Bali electricity system of 500 kV obtained an increase in length λ on the Pedan Bus which is equal to 0.233 p.u. (6.01) then on the Tasikmalaya Bus the addition of length λ is 0.0986 p.u. (2.55%) and on the Mandarican Bus the addition of length λ is 0.1228 p.u. (3.17%).
机译:对电力的需求正在迅速增加,其结果是对电气系统的稳定性的威胁,其中一个是电压稳定性。事实或灵活的交流传输系统是能够调节可用于克服稳定性问题的电力传输的电子设备。该研究将分析使用静态VAR补偿器(SVC)作为来自事实的设备之一,通过使用PSAT使用500 kV Java-Bali电力系统来克服最关键总线的稳定性。然后使用PV曲线的帮助观察电压的稳定性,该PV曲线可以示出每个操作条件中的电压条件的值。 java-bali电力系统的SVC安装在500kV的500kV中获得的长度λ上的长度λ等于0.233 p.u. (6.01)然后在TASIKMALAYA总线上,长度λ为0.0986 p.u. (2.55%)和普通话总线,长度λ为0.1228 p.u. (3.17%)。

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