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Losses Reduction in the Yendi-Bimbilla-Kete Krachi Power Sub-transmission Line Using One of Two Flexible AC Transmission System Devices

机译:使用两个柔性交流输电系统设备之一减少Yendi-Bimbilla-Kete Krachi输电线路的损耗

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Rapid rate of development in modern times, proliferation of more sophisticated electrical appliances and expansion of industries call for increases in electric power generation and upgrading of sub-transmission networks. This paper investigated the power system of the Yendi– BimbillaKete Krachi sub-transmission line with regard to voltage stability and power losses. To achieve this, the sub- transmission line was modelled and simulated using NEPLAN V543 software. Base case simulation results indicated a drop in voltage below the Public Utility Regulatory Commission (PURC) acceptable limits giving rise to the use of Flexible Alternating Current Transmission System (FACTS) technology. This came in handy to improve power system performance of the sub- transmission line without altering its size or the number of circuits. Deploying Static VAr Compensator (SVC) and Thyristor Controlled Series Capacitor (TCSC) onto the network, power system constraints of voltage instability and higher power losses reduced appreciably. Out of six scenarios considered, installation of 2.6 MVAr SVC at Bimbilla gave an average voltage improvement of 6.34%, 22.43% reduction in active power losses, and 66.89% improvement in the reduction of reactive power losses over the respective values of base case. By way of recommendation, 2.6 MVAr of SVC should be incorporated at Bimbilla for effective voltage profile enhancement and losses reduction.
机译:现代的快速发展,更先进的电器的普及和产业的扩展要求增加电力的产生和子传输网络的升级。本文研究了Yendi–BimbillaKete Krachi子传输线的电力系统的电压稳定性和功率损耗。为此,使用NEPLAN V543软件对子传输线进行建模和仿真。基本案例模拟结果表明,电压下降到公用事业监管委员会(PURC)可接受的限制以下,从而导致使用了灵活的交流输电系统(FACTS)技术。在不改变其尺寸或电路数量的情况下,这有助于改善子传输线的电力系统性能。在网络上部署静态VAr补偿器(SVC)和晶闸管控制的串联电容器(TCSC),可大大降低电力系统对电压不稳定和更高功率损耗的限制。在所考虑的六个方案中,在Bimbilla上安装2.6 MVAr SVC可以使平均电压提高6.34%,有功功率损耗降低22.43%,无功功率损耗降低66.89%(相对于基本案例的相应值)。通过推荐的方式,应在Bimbilla并入2.6 MVAr的SVC,以有效提高电压分布并降低损耗。

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