采用超导故障限流器的太阳能发电场直流输电线路故障分析及保护方案

H. Alafnan
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摘要

实现碳中和是全球许多发达国家和发展中国家的重要目标之一。减少碳排放和达到碳中和的一种方法是广泛利用可再生能源(RES)。尽管RESs对电网的高渗透有显著的好处,但也存在一些挑战:交流输电线路的损耗。随着电力电子器件的不断改进,由于种种原因,直流输电线路在技术上和经济上更加可行。举几个例子,直流输电线路不受趋肤效应的影响。此外,在直流系统中,电晕损耗显着降低。然而,直流输电线路故障由于缺少过零点,产生的故障震级高,上升时间短,给保护带来了挑战。再加上现有的直流断路器具有长达4毫秒的长操作时间。本文提出了超导故障限流器(SFCL)作为太阳能发电厂直流输电线路的保护方案。SFCL可以减小故障电流,在故障场景下支持保护系统。在MATLAB/Smilunk中对社区太阳能发电场、直流输电线路、整流器、逆变器和SFCL进行建模,对直流输电线路进行故障分析,并测试SFCL模型在故障场景下的性能。
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Fault Analysis and Protection Solution for DC Transmission Lines of Solar Farms Using Superconducting Fault Current Limiters
Achieving carbon neutrality is one of the important goals for many developed and developing countries worldwide. One method to reduce carbon emissions and reach carbon neutrality is the extensive utilization of renewable energy sources (RES). Even though there are significant benefits of the high penetration of RESs to the electrical grid, there are some challenges: the losses in the AC transmission lines. With the current improvement of power electronics devices, the DC transmission lines can be more viable technically and economically for various reasons. To name a few, DC transmission lines do not suffer from the skin effect. Also, corona losses are significantly lower in the case of DC systems. However, DC transmission line faults pose a protection challenge due to the lack of zero-crossing points, which erupt high fault magnitudes with a short rise time. Coupled with the fact that existing DC circuit breakers have long operation times of up to 4 msec. In this paper, superconducting fault current limiters (SFCL) are proposed to be used as a protection solution for the DC transmission line of the solar farm. The SFCL can reduce the fault currents and support the protection system during fault scenarios. A community solar farm, DC transmission lines, rectifiers, inverters, and SFCLs have been modeled in MATLAB/Smilunk to carry out the fault analysis in the DC transmission lines and test the performance of the SFCL model during fault scenarios.
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