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Operation optimization of Ikeja west power subtransmission network in a deregulated market environment

机译:放松市场环境下宜家西部电网的运行优化

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The deregulation of the electric market makes the optimal operation of the network imperative. The incentive of this process includes more customer penetration, higher profit margin and improved system efficiency. This paper presents the results of optimal power flow evaluation and power factor improvement of the Ikeja West 132kV Subtransmission network. The steady state power flow of the network was evaluated using multiple slack selection. Newton algorithm was adopted and implemented on ETAP 12.6 with the objectives to minimize transmission losses and improve bus voltage stability. Furthermore, a model for optimum capacitor placement using genetic algorithm (GA) to minimize operation cost and maximize profit for a five year testing period is developed. Voltage magnitudes at the132kV buses are observed to be critical and below the stability limit with Agbara, Alausa and Oworo existing at 0.92, 0.93 and 0.923 p.u respectively. Optimal power flow evaluation presents a 69% and 67% reduction in active and reactive power losses respectively. The optimal placement of capacitors presented a reduction of $5.85M in installation and operation for the first operation year. The deregulated market is driven by profit consequently the optimization model and cost benefit analysis (CBA) presented in this research is effective for optimized system operations.
机译:电力市场的放松管制使网络的最佳运行势在必行。此过程的诱因包括更多的客户渗透,更高的利润率和更高的系统效率。本文介绍了Ikeja West 132kV子传输网络的最佳潮流评估和功率因数改善的结果。使用多个松弛选择来评估网络的稳态功率流。牛顿算法被采用并在ETAP 12.6上实现,目的是最大程度地减少传输损耗并提高总线电压稳定性。此外,开发了一种使用遗传算法(GA)的最佳电容器放置模型,以最小化运营成本并在五年的测试期内最大化利润。观察到132kV母线上的电压幅度非常关键,并且低于稳定极限,Agbara,Alausa和Oworo分别存在于0.92、0.93和0.923p.u。最佳潮流评估显示有功和无功损耗分别减少了69%和67%。电容器的最佳放置减少了首个运营年度的安装和运营成本585万美元。放松管制的市场是由利润驱动的,因此本研究中提出的优化模型和成本效益分析(CBA)对于优化系统操作是有效的。

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