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Analysis of the Load Flow Problem in Power System Planning Studies

机译:电力系统规划研究中的潮流问题分析

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Load flow is an important tool used by power engineers for planning, to determine the best operation for a power system and exchange of power between utility companies. In order to have an efficient operating power system, it is necessary to determine which method is suitable and efficient for the system’s load flow analysis. A power flow analysis method may take a long time and therefore prevent achieving an accurate result to a power flow solution because of continuous changes in power demand and generations. This paper presents analysis of the load flow problem in power system planning studies. The numerical methods: Gauss-Seidel, Newton-Raphson and Fast Decoupled methods were compared for a power flow analysis solution. Simulation is carried out using Matlab for test cases of IEEE 9-Bus, IEEE 30-Bus and IEEE 57-Bus system. The simulation results were compared for number of iteration, computational time, tolerance value and convergence. The compared results show that Newton-Raphson is the most reliable method because it has the least number of iteration and converges faster.
机译:潮流是电力工程师用于计划,确定电力系统最佳运行以及在公用事业公司之间进行电力交换的重要工具。为了拥有高效的运行电源系统,有必要确定哪种方法适合并有效地进行系统的潮流分析。潮流分析方法可能会花费很长时间,因此会由于电能需求和发电量的不断变化而导致无法获得准确的潮流解决方案结果。本文介绍了电力系统规划研究中的潮流问题分析。数值方法:高斯-赛德尔,牛顿-拉夫森和快速解耦方法被比较作为潮流分析解决方案。使用Matlab对IEEE 9-Bus,IEEE 30-Bus和IEEE 57-Bus系统的测试用例进行了仿真。比较了仿真结果的迭代次数,计算时间,公差值和收敛性。比较结果表明,Newton-Raphson是最可靠的方法,因为它具有最少的迭代次数,并且收敛速度更快。

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