Abstract
The offshore wind power has received immense attention because of higher wind speed and lower opposition for construction. A wide range of combinations of high-voltage ACDC transmission have been proposed for integrating offshore wind farms and long-distance power transmission. This paper is to model such hybrid AC-DC systems including the interfacing converters, which have several control parameters that can change the load flow of the hybrid systems. Then, the paper proposes a Load Flow algorithm based on the Newton-Raphson method, which covers three different section types of the transmission system: the AC parts, the DC parts and the
interfacing converters. Finally, this paper validates this algorithm through a detailed case study with a typical hybrid network
interfacing converters. Finally, this paper validates this algorithm through a detailed case study with a typical hybrid network
Original language | English |
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Title of host publication | Proceedings of ISGT Asia 2017 |
Number of pages | 5 |
Publisher | IEEE |
Publication date | 2017 |
DOIs | |
Publication status | Published - 2017 |
Event | 2017 IEEE Innovative Smart Grid Technologies - Asia - Auckland, New Zealand Duration: 4 Dec 2017 → 7 Dec 2017 https://ieeexplore.ieee.org/xpl/conhome/8370759/proceeding |
Conference
Conference | 2017 IEEE Innovative Smart Grid Technologies - Asia |
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Country/Territory | New Zealand |
City | Auckland |
Period | 04/12/2017 → 07/12/2017 |
Internet address |
Keywords
- Hybrid AC-DC network
- Load Flow
- Newton-Raphson
- Offshore Wind Farm
- Voltage Source Converter