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Grid code interrelation, wind generation evolution and reactive compensation. Special topics inside a grid code

机译:电网代码的相互关系,风力的产生和无功补偿。网格代码中的特殊主题

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By all appearances, the evolution of wind generation has been orientated to satisfy the requirements, every time inside narrower limits, imposed by the grid codes, standing out among all the determining ones, the administration of the reactive power. In the age of induction generator's fixed speed, the requirements to access to the network were lax, considering the lack, for any practical, end of the capability's curves. The advent of the DFIG's and the electronic switch (IGBT's) evolution, have allowed that a wind farm, in the first instance, can handle the reactive power by means of the availability of a capability curve and comply, this way, with the most restricted codes. The update has been given in very recent date, with a wind farm's activation of an integrated by DFIG's and full converter generators, whose capability's curve are similar to that of a conventional plant. Seeing to the future, probably let's be able attend the elimination of the gear's box. Nowadays the wind generators operate better with high speeds and, therefore, they need gear's box to reduce it. Considering all gear train's issues: cost, vibrations, noise, fatigue, lubrication and maintenance, eliminating the box would have big advantages. The recent versions of the grid code, authorizes the operator to treat the wind farm just like a conventional plant, using the capacity of reactive power inside the extended range of the capability curve. This is not just for reducing the limits inside which one must move the tension and the power factor; now the wind farms must satisfy polygon's critical points of operation, impossible to satisfy with the first generation machines. Under this new operation criterion, the good administration of reactive power is the result from a combination of machines contributions, switched capacitor banks and the reactive dynamic compensation get it using switch electronic devices. The grid code tacitly, yields the owner of the wind farm, the responsibil- ty of solving extraordinary problems or out of the normal catalogue, like a subsynchronous resonance or torsional effects. Give an idea of the entail of all these factors is the purpose of this paper.
机译:从所有方面看,风力发电的发展都旨在满足要求,每次在由电网规范规定的更狭窄的限制内,在所有确定的限制中脱颖而出,都是无功功率的管理。在感应发电机定速的时代,考虑到在任何实际情况下均缺乏能力曲线的终点,接入网络的要求松懈。 DFIG和电子开关(IGBT)的发展使风电场首先可以通过能力曲线的可用性来处理无功功率,并以此方式遵守最严格的要求。代码。该更新是在最近的日期进行的,由风电场激活了双馈发电机和全变流发电机的集成,其能力曲线与常规电厂的曲线相似。展望未来,也许让我们能够参加齿轮箱的淘汰。如今,风力发电机在高速运转时表现更好,因此,它们需要齿轮箱来减小它。考虑到所有齿轮系的问题:成本,振动,噪音,疲劳,润滑和维护,取消齿轮箱将具有很大的优势。电网法规的最新版本授权操作员像常规电厂一样,在能力曲线扩展范围内使用无功功率来对待风电场。这不仅是为了减少必须在其中移动张力和功率因数的极限;而且现在,风电场必须满足多边形的关键运行点,这是第一代机器无法满足的。在这种新的运行标准下,无功功率的良好管理是由机器的贡献,开关电容器组和无功动态补偿的组合所产生的,而无功动态补偿是使用开关电子设备获得的。电网规则是默契的,使风电场的所有者有解决异常问题或超出正常目录的责任,例如次同步共振或扭转效应。给出所有这些因素的必要性是本文的目的。

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