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Enhancing energy utilization efficiency of Pakistani system considering FACTS devices and distributed generation: Feasibility study

机译:考虑事实设备和分布式发电,提高巴基斯坦系统的能量利用效率:可行性研究

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摘要

In recent years, voltage stability issues have become a serious concern with regard to the safety of electrical systems, these issues are more evident and have wider consequences in vertical networks with an insufficient reactive power reserve. Pakistan is currently suffering from the worst energy crisis in its history. Owing to an increase in energy demand, the current transmission system is becoming increasingly inadequate. It has thus become necessary to reduce losses and enhance the system voltage profile for more efficient energy utilization. In this study, the main emphasis is on assessing the feasibility of using flexible AC transmission system devices and distributed generation to compensate power failures on the power lines of the Pakistani power transmission system. The load flow and contingency analyses are performed on a 132 kV transmission system that feeds power to the Quetta electric supply company. The region of Baluchistan is studied to evaluate the effectiveness of the proposed method. The system is simulated using NEPLAN, which accurately models the details of all system elements and the optimal power flow. The simulation results indicate that the proposed method helps reduce system losses, voltage deviation, and power flow congestion, with all system constraints within permissible limits.
机译:近年来,关于电气系统的安全性,电压稳定性问题已经成为一个严重关切的问题,这些问题更明显,并且在具有不足的无功功率储备中具有更广泛的后果。巴基斯坦目前正在遭受其历史上最严重的能源危机。由于能源需求的增加,目前的传动系统变得越来越不足。因此,需要减少损耗并增强系统电压型材以获得更有效的能量利用。在本研究中,主要重点是评估使用柔性AC传输系统装置和分布式发电的可行性,以补偿巴基斯坦电力传输系统的电力线上的电源故障。负载流量和应变分析是在132 kV传输系统上进行的,该系统为克雷塔电源公司提供电力。研究了Baluchistan的地区,以评估所提出的方法的有效性。系统使用Neplan模拟系统,该系统精确地模拟了所有系统元素的细节和最佳功率流。仿真结果表明,该方法有助于降低系统损耗,电压偏差和电力流动拥塞,在允许限制范围内所有系统约束。

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