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Using loss location and loss magnitude manipulation for slip gain tuning in field oriented induction machine controllers

机译:在磁场定向感应器控制器中使用损耗位置和损耗幅度操纵进行滑差增益调整

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This work investigates loss location and loss magnitude manipulation via slip gain tuning in indirect field oriented induction machine drives. By using finite element analysis (FEA), the spatial distribution of the losses and the extent to which the distribution is manipulated via control tuning of the slip gain is investigated. Practical slip gain tuning variations across the full operating range, such as low speed when convection-based heat transfer is less effective, as well as high speed, are investigated. In addition, the dynamic performance corresponding to loss location manipulation tuning is investigated and documented. In this work, it is seen that using inadequate slip gain for field orientation reduces the total rotor losses within the machine. There is an opportunity to balance the shift of rotor loss to stator loss with the marginal degradation in torque dynamic performance when the slip gain is reduced for loss location manipulation. This work leads to a systematic method for understanding how loss location and magnitude change as a function of indirect field oriented controller tuning, with a goal of expanding the controller tuning paradigm to add a loss location objective to the classical dynamic torque performance objective.
机译:这项工作通过间接磁场定向感应电机驱动器中的滑差增益调整来研究损耗位置和损耗幅度操纵。通过使用有限元分析(FEA),研究了损耗的空间分布以及通过滑差增益的控制调整来控制分布的程度。研究了在整个工作范围内的实际滑差增益调整变化,例如基于对流的传热效率较低时的低速以及高速。另外,调查并记录了与丢失位置操纵调整相对应的动态性能。在这项工作中,可以看到使用不足的滑差增益进行磁场定向会减少电机内部的总转子损耗。当减少滑差增益以进行损耗位置操纵时,就有机会平衡转子损耗到定子损耗的变化与转矩动态性能的边际降低。这项工作导致了一种系统的方法,该方法用于理解损耗位置和幅度如何根据间接定向磁场的控制器调整而变化,目的是扩展控制器调整范例,以将损耗位置目标添加到经典动态转矩性能目标中。

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