Load Flow and Transient Stability Analyses for an Integrated Solar Combined Cycle Station in Iraqi Southern by Using ETAP

A. Z. Abass, D. Pavlyuchenko, A. Prokopov, Saadallah Hussain Zozan
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引用次数: 3

Abstract

Analyses of a power system are important for designing and operating phase execution monitoring and to ensure reliable grid operations by sufficient protection projects settings. In this paper, electrical model of a 340 MW integrated solar combined cycle (ISCC) located in the south of Iraq, is developed by Electrical Transient Analyzer Program (ETAP) and load flow, voltage stability and short circuit analyses are performed. Impact of power grid voltage instability on system buses of the power plant is estimated. Using load flow analysis that use Newton-Raphson algorithm, buses operating at under voltage due to power grid voltage instability are specified and their voltages are improved according to given voltage limitation that are based on buses criticality with regard to loads. On-load tap changers and reactive power compensation are used to improve steady state voltage stability. Optimal position for capacitor banks placement and number of capacitor banks are proposed by using optimal capacitor placement module of ETAP. The use of modern technology and advance planning have a big impact on reducing losses. The article shows that the lack of planning is one of the main causes of energy losses. The parameters of the module also indicate the voltage limits, bus voltage and ratings of available capacitor banks. The voltage limit is set at 95% ≤ V ≤ 110%, and it is global for all buses
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基于ETAP的伊拉克南部太阳能联合循环电站负荷潮流与暂态稳定分析
电力系统的分析对于设计和运行相执行监测以及通过充分的保护工程设置来保证电网的可靠运行具有重要意义。本文利用电瞬态分析程序(ETAP)建立了位于伊拉克南部的340 MW集成太阳能联合循环(ISCC)的电气模型,并对其进行了负荷潮流、电压稳定性和短路分析。估计了电网电压不稳定对电厂系统母线的影响。利用牛顿-拉夫森算法的负荷流分析,规定了由于电网电压不稳定而在低电压下运行的母线,并根据给定的基于母线对负载的临界性的电压限制来改进母线的电压。采用有载分接开关和无功补偿来提高稳态电压的稳定性。利用ETAP的最优电容器放置模块,提出了电容器组放置的最优位置和电容器组数量。现代技术的使用和提前规划对减少损失有很大的影响。研究表明,缺乏规划是造成能源损失的主要原因之一。该模块的参数还显示了可用电容器组的电压限值、母线电压和额定值。电压限值设定为95%≤V≤110%,对所有母线均适用
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