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Performance evaluation of decoupled control of rotor torque and rotor electric power in a salient pole synchronous machine

机译:转子扭矩和转子电力去耦控制的性能评估凸极同步机中的转子电力

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This paper presents the performance of a closed loop current control drive system which provides independent control of rotor torque and rotor current in a salient-pole synchronous machine. The machine is modeled using a d-q equivalent circuit in the rotor reference frame. The analysis shows that if the rotor current and its derivative are continuous functions, it is possible to derive equations for both the d and q axis stator currents that control the electric power transferred to a resistive load mounted on the rotor and independently control the rotor torque. The drive system is affected by factors included in the derived d-q axis stator currents. The effect of these factors, namely, d-q axis inductance, command rotor current, and flux perturbation frequency is investigated using both simulation and experimentation. Further, the effect of increasing interpolar cut-out on both rotor torque and rotor electric power is investigated. The technique eliminates the need for slip rings. The machine would find such uses as in rotational antenna and turret systems, or other situations where power is required for an electric load mounted on a rotating assembly.
机译:本文介绍了闭环电流控制驱动系统的性能,该驱动系统提供了突出极同步机中的转子扭矩和转子电流的独立控制。该机器使用转子参考框架中的D-Q等效电路进行建模。该分析表明,如果转子电流及其导数是连续的功能,则可以为D和Q轴定子电流提供控制电力传递到安装在转子上的电阻负载的电力并独立地控制转子扭矩的方程。驱动系统受导出的D-Q轴定子电流中包括的因素的影响。使用两种模拟和实验研究了这些因素,即D-Q轴电感,命令转子电流和磁通扰动频率的效果。此外,研究了在转子扭矩和转子电力上增加了间隔切口的效果。该技术消除了对滑环的需求。该机器将发现如旋转天线和转塔系统中的用途,或者在旋转组件上安装电负载所需的电力所需的其他情况。

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