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Comparative economic analysis of low frequency AC transmission system for the integration of large offshore wind farms.

Authors :
Meng, Yongqing
Yan, Shuhao
Wu, Kang
Ning, Lianhui
Li, Xuan
Wang, Xiuli
Wang, Xifan
Source :
Renewable Energy: An International Journal. Dec2021, Vol. 179, p1955-1968. 14p.
Publication Year :
2021

Abstract

To fully extract the potential of offshore wind power, the wind farms are built further from mainland and the capacity is growing larger. Low Frequency AC (LFAC) transmission System is a promising solution to the integration of large offshore wind farms in long distance. This paper conducts a comparative economic analysis of LFAC. Compared to 50 Hz High Voltage AC (HVAC) transmission, LFAC can reduce charging current in AC cables to enhance the transmission ability in long distance. Compared to High Voltage DC (HVDC) transmission, LFAC eliminates the large expense of offshore converter station. In addition, the topologies of AC/AC converter in LFAC also influences the economic performance significantly. By designing typical AC/AC converters based on modular multilevel technique in a unified way, this paper performs a full-scale economic comparison in different voltage level, active power and reactive power cases. Furthermore, the economic comparison based on capital cost of HVAC, HVDC and LFAC is comprehensively studied considering different transmission capacity and the AC/AC converter topologies. The economic range of HVAC, LFAC and HVDC application is obtained, and results show that LFAC is suitable for medium distance circumstances (around 80–200 km). The economic range of LFAC expands when power rating increases. • Economic range of HVAC, HVDC and LFAC is analyzed according to their capital cost. • Converter topologies and transmission capacity is considered in the cost of LFAC. • Comprehensive comparison of four AC/AC converter topologies for LFAC is conducted. • A unified method is introduced to design four AC/AC converter topologies. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09601481
Volume :
179
Database :
Academic Search Index
Journal :
Renewable Energy: An International Journal
Publication Type :
Academic Journal
Accession number :
152631569
Full Text :
https://doi.org/10.1016/j.renene.2021.07.137