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Efficiency improvement of small hydroelectric power stations with a permanent-magnet synchronous generator

机译:带有永磁同步发电机的小型水力发电站的效率提高

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The Climate change, the growing shortage of fossil raw materials and the requirements for CO2 emission reduction forces the thrust to design energy-efficient powertrain topologies for power generation. The share of renewable energies to 2030 will be increased to 20% of the total energy demand in Europe. This includes not only wind energy, solar energy and biomass, but also the hydroelectric power. Not only in Europe in general but also in Bavaria in particular, the use of hydropower is to be further developed. The Bavarian state government has decided in a framework paper to maintain and enhance the use of hydropower. To achieve the energy improvement a permanentmagnet synchronous generator has to be developed especially for small hydropower. The use of permanent-magnet low-speed synchronous generators for small hydropower stations is to be made economically by new manufacturing methods even in small quantities.
机译:气候变化,化石原料日益短缺以及对CO 2 减排的要求迫使人们努力设计用于发电的节能型动力总成拓扑。到2030年,可再生能源的份额将增加到欧洲总能源需求的20%。这不仅包括风能,太阳能和生物质,还包括水力发电。不仅在整个欧洲,尤其是在巴伐利亚,水电的使用都将得到进一步发展。巴伐利亚州政府已在框架文件中决定维持和加强水电的使用。为了提高能源效率,必须开发永磁同步发电机,尤其是针对小型水力发电的永磁同步发电机。小型水力发电站使用永磁低速同步发电机,即使是少量生产,也要通过新的制造方法经济地进行。

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