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Detuned operation of rotor flux oriented induction machines in the field-weakening region due to iron loss

机译:由于铁损,磁场弱化区域中的转子磁通定向感应电机失谐运行

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摘要

Iron loss, traditionally ignored in vector control schemes, inevitably causes certain detuning during operation of a rotor flux oriented induction machine. The studies that discuss detuning in the base speed region, for operation at rated speed with rated rotor flux command, are already available. However, it appears that no detuning study has been performed for the field-weakening region so far. Any such study would require identification of equivalent iron loss resistance at frequencies other than rated. The aim of this paper is twofold. Firstly, an experimental method that enables identification of equivalent iron loss resistance over the frequency range of interest is described and experimental results are presented. Then, the equivalent iron loss resistance values are utilised in evaluation of detuning in the field-weakening region, for speeds up to five times rated. Detuning in the field-weakening region is found to be significantly in excess of the one met at rated speed, if the machine operates at high speeds with relatively light loads.
机译:在矢量控制方案中传统上会忽略的铁损不可避免地会导致转子磁通定向感应电机在运行过程中出现某些失谐。有关在额定速度下通过额定转子磁通指令运行的基本速度范围内失谐的研究已经可用。但是,到目前为止,似乎尚未对弱磁场区域进行失谐研究。任何此类研究都需要确定除额定频率外的等效铁损电阻。本文的目的是双重的。首先,描述了一种能够识别出感兴趣的频率范围内的等效铁损电阻的实验方法,并给出了实验结果。然后,等效的铁损抗阻值可用于评估弱磁区域中的失谐,其速度最高可达到额定速度的五倍。如果机器在相对轻载的情况下高速运行,则在弱磁区域中的失谐将大大超过额定速度下的失谐。

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