黄阳, 陶永政, 孔志达, 宁联辉, 丁伟, 王素蕾, 吴广大, 王庆建. 海上风电柔性低频输电系统的技术经济分析[J]. 电网技术, 2024, 48(12): 4865-4875. DOI: 10.13335/j.1000-3673.pst.2024.1228
引用本文: 黄阳, 陶永政, 孔志达, 宁联辉, 丁伟, 王素蕾, 吴广大, 王庆建. 海上风电柔性低频输电系统的技术经济分析[J]. 电网技术, 2024, 48(12): 4865-4875. DOI: 10.13335/j.1000-3673.pst.2024.1228
HUANG Yang, TAO Yongzheng, KONG Zhida, NING Lianhui, DING Wei, WANG Sulei, WU Guangda, WANG Qingjian. Techno-economic Analysis of Flexible Low-frequency Transmission System for Offshore Wind Farm Integration[J]. Power System Technology, 2024, 48(12): 4865-4875. DOI: 10.13335/j.1000-3673.pst.2024.1228
Citation: HUANG Yang, TAO Yongzheng, KONG Zhida, NING Lianhui, DING Wei, WANG Sulei, WU Guangda, WANG Qingjian. Techno-economic Analysis of Flexible Low-frequency Transmission System for Offshore Wind Farm Integration[J]. Power System Technology, 2024, 48(12): 4865-4875. DOI: 10.13335/j.1000-3673.pst.2024.1228

海上风电柔性低频输电系统的技术经济分析

Techno-economic Analysis of Flexible Low-frequency Transmission System for Offshore Wind Farm Integration

  • 摘要: 海上风电正朝着中远海距离、大容量集群的应用场景发展,研究安全、可靠且经济的海上风电输电技术具有重要意义。首先分析了海上无功补偿度和系统频率对输送能力的影响,得到了系统输送能力解析表达式;其次,构建了考虑频率、无功补偿度等因素对其设备成本影响的高压交流(high voltage alternating current,HVAC)、高压直流(high voltage direct current,HVDC)和柔性低频(low frequency alternating current,LFAC)输电系统全生命周期成本模型;以系统成本最低为优化目标函数,基于深远海风电送出场景的边界条件,求解得出全容量下系统最优频率、最优无功补偿度分布;最后,基于3种输电方式的最优系统成本,得到了深远海风电采用不同方案送出的全容量技术经济区间。结果表明,输送容量在300~2100MW内,HVAC方案的经济距离上界约为60~80km,LFAC方案的上界约为150~210km,验证了柔性低频输电技术在中远距离、大规模海上风电场景中的技术经济优势。

     

    Abstract: Offshore wind power is developing towards the application scenario of long-distance and large-capacity clustered use. Researching safe, reliable, and economical offshore wind power transmission technologies is significant. First, this paper analyzes the influence of offshore reactive power compensation degree and system frequency on transmission capacity, and the analytical expression of system transmission capacity is obtained. Secondly, a full life-cycle cost model for High Voltage Alternating Current (HVAC), High Voltage Direct Current (HVDC), and Low-Frequency Alternating Current(LFAC) transmission systems was developed, considering the impact of factors such as frequency and reactive power compensation on equipment costs. With the system cost minimization as the optimization objective function, based on the boundary conditions of the offshore wind power transmission scenario in the deep sea, the system's optimal frequency and reactive power compensation distribution are solved. Finally, based on the optimal system cost of the three transmission methods, the full-capacity technical and economic range of offshore wind power transmission using different schemes is obtained. The results show that the transmission capacity is within the range of 300-2100MW, and the upper bound of the economic distance of the HVAC scheme is approximately 60-80km, while the upper bound of the LFAC is 150-210km. The results prove the technical and economic advantages of flexible low-frequency transmission technology in mid-to-long-distance, large-scale offshore wind power scenarios..

     

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