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High-Power-Density Power Conversion Systems for HVDC-Connected Offshore Wind Farms

机译:用于连接HVDC的海上风电场的高功率密度功率转换系统

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Offshore wind farms are rapidly growing owing to their comparatively more stable wind conditions than onshore and land-based wind farms. The power capacity of offshore wind turbines has been increased to 5MW in order to capture a larger amount of wind energy, which results in an increase of each component's size. Furthermore, the weight of the marine turbine components installed in the nacelle directly influences the total mechanical design, as well as the operation and maintenance (O&M) costs. A reduction in the weight of the nacelle allows for cost-effective tower and foundation structures. On the other hand, longer transmission distances from an offshore wind turbine to the load leads to higher energy losses. In this regard, DC transmission is more useful than AC transmission in terms of efficiency because no reactive power is generated/consumed by DC transmission cables. This paper describes some of the challenges and difficulties faced in designing high-power-density power conversion systems (HPDPCSs) for offshore wind turbines. A new approach for high gain/high voltage systems is introduced using transformerless power conversion technologies. Finally, the proposed converter is evaluated in terms of step-up conversion ratio, device number, modulation, and costs.
机译:由于海上风电场比陆上和陆上风电场相对稳定,海上风电场正在迅速发展。海上风力涡轮机的功率容量已增加到5MW,以捕获更多的风能,这导致每个组件的尺寸增加。此外,安装在机舱中的船用涡轮机部件的重量直接影响总体机械设计以及运营和维护(O&M)成本。机舱重量的减少允许具有成本效益的塔架和基础结构。另一方面,从海上风力涡轮机到负载的更长的传输距离导致更高的能量损失。在这点上,就效率而言,直流传输比交流传输更有用,因为直流传输电缆不会产生/消耗无功功率。本文介绍了在设计用于海上风力涡轮机的高功率密度功率转换系统(HPDPCS)时面临的一些挑战和困难。使用无变压器功率转换技术引入了一种用于高增益/高压系统的新方法。最后,根据升压转换比,器件数量,调制和成本对所提出的转换器进行评估。

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