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Effects of lifting reactance requirements on the optimal design of converter-fed synchronous hydrogenerators

机译:提升电抗要求对转炉式同步水轮发电机优化设计的影响

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The maximum allowed per unit value of the synchronous reactance of a synchronous generator is normally decided by the grid codes in order to maintain the stability of the system. For the converter-fed synchronous hydrogenerator, the steady state stability can be maintained by the frequency converter. In this paper the constraint on the synchronous reactance is relaxed from 1.2 per unit to 2.0 per unit and then removed altogether. The cost of the active materials and the net present value of the cost of losses are calculated for each case and compared. Three different nominal frequencies are also used to find which one gives the lowest total cost. The total generator cost is reduced when the synchronous reactance is increased. The lowest cost of the 50 Hz designs are lower than the cost of the 25 and 75 Hz designs.
机译:同步发电机同步电抗的每单位值允许的最大允许由网格码决定,以便保持系统的稳定性。对于转换器馈电同步氢化机构,可以通过变频器维持稳态稳定性。在本文中,同步电抗的约束从每单位的1.2放宽至2.0单位,然后完全拆下。为每种情况计算活性材料的成本和损耗成本的净目的值并进行比较。三种不同的标称频率也用于找到哪一个给出哪一个总成本。当同步电抗增加时,总发生器成本降低。 50 Hz设计的最低成本低于25和75 Hz设计的成本。

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