A Study on Fault Analysis at Proposed HVDC Transmission System between Central and Western Regions in the Kingdom of Saudi Arabia

A. Alqahtani, E. A. Alammar, W. Koh
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Abstract

With the continuous growth of electrical demand, power grid construction accommodates the required load to be connected and integrated into the existing electrical grid. Many AC power transmission and DC transmission lines are constructed to meet large capacities worldwide. Traditionally High Voltage Alternating Current (HVAC) transmissions have been used for power transmission worldwide in the last century. High Voltage Direct Current (HVDC) technology has specific characteristics which make it unique for transmission system applications, such as long-distance transmission and submarine cable crossings. Studying all types of faults is necessary to protect the design and keep the grid healthy because the faults will significantly impact the transmission system’s operation. This work aims to study the impact of the faults at the proposed transmission line between Central and Western regions in the Kingdom of Saudi Arabia, as well as the feasibility of the project by deep research into the background of the HVDC system and fault analysis at the DC transmission system, which results in knowledge of the impact on the grid before and after the faults occur. The proposed work is modeled and simulated using PSCAD software to simulate the faults on the HVDC transmission line. The results were also analyzed and studied.
沙特阿拉伯王国拟建的中西部直流输电系统故障分析研究
随着电力需求的不断增长,电网建设容纳了需要接入并融入现有电网的负荷。许多交流输电和直流输电线路都是为了满足世界范围内的大容量而建造的。在上个世纪,高压交流电(HVAC)传输一直被用于全球范围内的电力传输。高压直流(HVDC)技术具有特定的特性,使其在传输系统应用中独树一帜,例如长距离传输和海底电缆交叉。对各种类型的故障进行研究对于保护设计和保持电网的健康运行是必要的,因为故障将对输电系统的运行产生重大影响。本工作旨在通过深入研究高压直流系统的背景,对直流输电系统进行故障分析,了解故障发生前后对电网的影响,研究拟建的沙特阿拉伯王国中西部输电线路的故障影响,以及项目的可行性。利用PSCAD软件对高压直流输电线路上的故障进行了建模和仿真。并对实验结果进行了分析和研究。
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