...
首页> 外文期刊>AIMS Energy >Adapting AC Lines to DC Grids for Large-Scale Renewable Power Transmission
【24h】

Adapting AC Lines to DC Grids for Large-Scale Renewable Power Transmission

机译:交流线适应直流电网以进行大规模可再生电力传输

获取原文
   

获取外文期刊封面封底 >>

       

摘要

All over the world, governments of different countries are nowadays promoting the use of clean energies in order to achieve sustainable energy systems. In this scenario, since the installed capacity is continuously increasing, renewable sources can play an important role. Notwithstanding that, some important problems may appear when connecting these sources to the grid, being the overload of distribution lines one of the most relevant. In fact, renewable generation is usually connected to the nearest AC grid, although this HV system may not have been designed considering distributed generation. In the particular case of large wind farms, the electrical grid has to transmit all the power generated by wind energy and, as a consequence, the AC system may get overloaded. It is therefore necessary to determine the impact of wind power transmission so that appropriate measures can be taken. Not only are these measures influenced by the amount of power transmitted, but also by the quality of the transmitted power, due to the output voltage fluctuation caused by the highly variable nature of wind. When designing a power grid, although AC systems are usually the most economical solution because of its highly proven technology, HVDC may arise in some cases (e.g. offshore wind farms) as an interesting alternative, offering some added values such as lower losses and better controllability. This way, HVDC technology can solve most of the aforementioned problems and has a good potential for future use. Additionally, the fast development of power electronics based on new and powerful semiconductor devices allow the spread of innovative technologies, such as VSC-HVDC, which can be applied to create DC grids. This paper focuses on the main aspects involved in adapting the existing overhead AC lines to DC grids, with the objective of improving the transmission of distributed renewable energy to the centers of consumption.
机译:当今世界,不同国家的政府都在促进使用清洁能源,以实现可持续的能源系统。在这种情况下,由于装机容量不断增加,可再生能源可以发挥重要作用。尽管如此,将这些电源连接到电网时可能会出现一些重要问题,这是最重要的配电线路过载。实际上,可再生能源发电通常连接到最近的交流电网,尽管该高压系统可能尚未设计为考虑分布式发电。在大型风电场的特殊情况下,电网必须传输风能产生的所有电力,因此,交流系统可能会过载。因此,有必要确定风力发电的影响,以便采取适当的措施。由于风的高度可变性引起的输出电压波动,这些措施不仅受传输的功率量的影响,而且受传输功率的质量的影响。在设计电网时,尽管交流系统由于其成熟的技术而通常是最经济的解决方案,但在某些情况下(例如海上风电场)可能会出现高压直流电,这是一个有趣的选择,它提供了一些附加值,例如损耗更低,控制性更好。 。这样,高压直流输电技术可以解决大多数上述问题,并具有未来使用的良好潜力。此外,基于新型而强大的半导体器件的电力电子技术的快速发展使诸如VSC-HVDC之类的创新技术得以传播,这些技术可用于创建直流电网。本文着眼于使现有架空交流电线路适应直流电网所涉及的主要方面,目的是改善分布式可再生能源向消费中心的传输。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号