
doi: 10.3390/wind2030025
This paper analyzes one of the most important power capture challenges of the DC series–parallel collection system, called the power curtailment losses. The wind speed difference between the series-connected turbines causes over- and under-voltage conditions in the output voltage of the MVDC (medium-voltage DC) converters of the wind turbine. The power curtailment losses caused by the upper-voltage tolerance levels of the MVDC converters of the wind turbines are analyzed considering a redundancy-based upper-voltage limiting condition. This analysis emphasizes the importance of choosing suitable voltage tolerance levels for the MVDC converters of wind turbines based on the wind farm configuration. The annual energy curtailment losses are quantified and evaluated by a comparative case study performed on a DC series–parallel-connected wind farm rated at 200 MW with the redundancy-based upper-voltage limiting condition.
DC wind farms, TK1001-1841, Production of electric energy or power. Powerplants. Central stations, DC series–parallel collection systems, power curtailment, redundancy, offshore wind farms, wind turbine MVDC converters, over-voltage limits
DC wind farms, TK1001-1841, Production of electric energy or power. Powerplants. Central stations, DC series–parallel collection systems, power curtailment, redundancy, offshore wind farms, wind turbine MVDC converters, over-voltage limits
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