航空电气化对GB输电系统电压偏差影响的研究

Bozheng Li, Xin Zhang, Zekun Guo, Y. Yuan
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摘要

随着对清洁能源需求的增加和电池技术的快速发展,航空电气化发展趋势显著,特别是小型或支线电动飞机(EA)。然而,高充电功率的EA的大量渗透也会影响上游电网的稳定运行,甚至造成严重的问题,尤其是电压降问题。本文重点分析了英国商用航空电气化对英国电力系统电压偏差的影响。通过将EA充电需求的负荷曲线纳入到模型中,对DigSILENT PowerFactory开发的GB传输系统的36个区域的简化模型进行了修改。准动态仿真得到了各区域24小时电压分布。同时,利用格兰杰因果检验对准动态模拟得到的电压分布进行分析,确定了GB不同区域电压变化的因果关系。结果表明,EA收费对系统有显著影响。在20:00时,当EA充电需求达到近100万pw时,系统电压降至0.826 pu,并对系统中电压变化影响最大的区域位置进行了说明和分析。
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Study on the Impact of Aviation Electrification on Voltage Deviation of the GB Transmission System
With the increasing demand for clean energy and rapid development of battery technology, there has been a notable trend in developing aviation electrification, particularly for small or regional electric aircraft (EA). Nevertheless, large penetration of EA with high charging power could also influence the stable operation of the upstream grid and even cause severe problems, particularly causing voltage-drop issue. In this paper, the impact on voltage deviation of the Great Britain (GB) electrical power system with the electrification of commercial aviation in the UK is highlighted and analysed. A reduced model of the GB transmission system developed in DigSILENT PowerFactory with 36 zones is modified by incorporating the load curves of the EA charging demand into the model. Quasi-Dynamic simulation is used to obtain 24-hour voltage profiles of each zone. Meanwhile, the Granger causality test is utilised to analyse the voltage profiles obtained from the Quasi-Dynamic simulation and determine the causal effects of the voltage variation between different areas of GB. The results reveal the significant impact of EA charging on the system. When the EA charging demand reached nearly IOOOOMW at20:00, the system voltage dropped to 0.826 p.u. The locations of the most influential zones for voltage variation in the system are also illustrated and analysed in this paper.
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