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Wind power PMSG optimally designed for maximum energy proceeds and minimum cost

机译:风力发电PMSG经过优化设计,可最大程度地提高能源收益并降低成本

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The paper presents the optimum design of a Permanent Magnet Synchronous Generator for wind power applications. The proposed optimization strategy deals with two contradictory objectives: to reduce generator costs and to raise the energy yield. This task is accomplished by maximizing the difference between the energy proceeds and the generator costs. The generator operating cycle is taken into account by a Weibull function that represents the wind profile for a fictitious site. A thermal model is adopted to evaluate the winding temperature and prevent overheating. The optimally designed machine is a 3-phase generator for 40 kW direct drive wind turbines. The results show that this strategy would produce a cost-effective machine.
机译:本文介绍了用于风电应用的永磁同步发电机的最佳设计。拟议的优化战略涉及两种矛盾的目标:减少发电机成本并提高能源产量。通过最大化能量所需和发电机成本之间的差异来实现此任务。由威布尔函数考虑发电机操作循环,该函数表示虚拟部位的风剖面。采用热模型来评估绕组温度并防止过热。最佳设计的机器是40 kW直接驱动风力涡轮机的三相发生器。结果表明,该策略将生产成本效益的机器。

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