首页> 外文期刊>Advances in Science and Technology Research Journal >EFFECTS OF STEEL PLANTS WITH THREE-PHASE INDUCTION FURNACES ON POWER DISTRIBUTION QUALITY OF THE EXISTING 33 kV NETWORK IN NIGERIA
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EFFECTS OF STEEL PLANTS WITH THREE-PHASE INDUCTION FURNACES ON POWER DISTRIBUTION QUALITY OF THE EXISTING 33 kV NETWORK IN NIGERIA

机译:三相感应炉炼钢对尼日利亚现有33 kV网络配电质量的影响

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This study aimed at evaluating and analyzing the voltage and current distortions on the introduction of a steel production plant in a typical 33 kV distribution system in Nigeria, with a view to assisting decisions made in the present system operation and planning effective service delivery in terms of quality. A three phase induction furnace was developed using MatLab Simulink software and the effects of steel plant loads on the quality of electric power system supply to electricity users on the same distribution network was analyzed in terms of total harmonic distortions of voltage and current. In order to evaluate voltage magnitude profile on the network, load flow computation and analyses were carried out on the 33 kV distribution network before and after the introduction of steel plant loads, using Successive Approximation Method. The results showed critical voltage magnitude profile below -5% of nominal voltage at the receiving end nodes. With the aid of the Matlab Simulink model, inadmissible voltage and current distortions of 15.47% and 10.35% were measured. Passive filter was proposed, designed and simulated, in order to mitigate these distortions caused by the steel production plant loads. By simulation, the installation of the designed passive filter gave a reduction of the distortions to permissible values. Further, for every 1 MW load increment when the steel plant is connected, network losses increased by 94%; however, for every of Mvar of filter capacity, loss reduction in the network is 5.1 MW.
机译:这项研究旨在评估和分析在尼日利亚典型的33 kV配电系统中引入钢铁生产厂时产生的电压和电流畸变,以协助当前系统运行中做出的决策并规划有效的服务交付。质量。使用MatLab Simulink软件开发了三相感应炉,并根据电压和电流的总谐波失真,分析了钢铁厂负荷对同一配电网络上电力用户的电力系统供电质量的影响。为了评估网络上的电压幅值分布,在钢厂负荷引入之前和之后,对33 kV配电网络进行了潮流计算和分析,采用了逐次逼近法。结果表明,在接收端节点处,临界电压幅度曲线低于额定电压的-5%。借助Matlab Simulink模型,测得的不允许的电压和电流畸变分别为15.47%和10.35%。提出,设计和模拟了无源滤波器,以减轻钢厂负荷造成的这些失真。通过仿真,设计无源滤波器的安装将失真减小到允许值。此外,连接钢厂时,每增加1 MW的负荷,网络损耗就会增加94%;但是,对于滤波器容量的每Mvar,网络中的损耗降低为5.1 MW。

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