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首页> 外文期刊>International Journal of Engineering and Manufacturing(IJEM) >Load Flow Analysis of a Power System Network in the Presence of Uncertainty using Complex Affine Arithmetic
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Load Flow Analysis of a Power System Network in the Presence of Uncertainty using Complex Affine Arithmetic

机译:存在不确定性的电力系统网络潮流计算的复杂仿射算法

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The depletion of fossil fuel is driving the world towards the application of renewable energy sources. However, their intermittent nature, in addition to load variation and transmission line sag-tension change due to temperature, is a great deal of problems for reliable power delivery. Without a reliable power delivery, power generation is just a waste of resources. A reliable power delivery can be achieved when the best and the worst case steady state information of a power system network is known to plan and control accordingly. If a system is affected by the presence of uncertainty, a deterministic load flow analysis fails to provide the worst-case load flow result in a single analysis. As a result, a load flow analysis considering the presence of uncertainty is mandatory. On this paper, a novel complex affine arithmetic (AA) based load flow analysis in the presence of generation and load uncertainties is proposed. The proposed approach is tested on an IEEE bus systems and compared with Monte Carlo approach. The proposed approach convergence faster than the Monte Carlo based method and it is slightly conservative.
机译:化石燃料的枯竭正在推动世界转向可再生能源的应用。然而,除了负载变化和由于温度引起的传输线垂度-张力变化之外,它们的间歇性质对于可靠的功率传输还存在许多问题。如果没有可靠的电力输送,发电只会浪费资源。当已知电力系统网络的最佳和最差情况稳态信息时,可以相应地进行计划和控制,从而实现可靠的供电。如果系统受到不确定性的影响,则确定性潮流分析将无法在一次分析中提供最坏情况下的潮流结果。结果,考虑到不确定性的潮流分析是必须的。在本文中,提出了一种基于发电量和负荷不确定性的新型基于复杂仿射算法的潮流分析方法。该方法在IEEE总线系统上进行了测试,并与蒙特卡洛方法进行了比较。所提出的方法收敛速度比基于蒙特卡洛的方法快,并且稍微保守一些。

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