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Investigation of the Influence of Direct and Indirect Current Control Methods on the Dynamic Properties of a State Space Speed Control

机译:研究直接和间接电流控制方法对状态空间速度控制的动态特性的影响

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In highly dynamic drive systems, state space speed control methods can be used to dampen mechanical oscillations. While a complete state space control allows arbitrary speed control loop dynamics, in reality, these are limited by the underlying current control and its ability to implement the required torque in the electric machine. If a state space speed control is used, the current control method must be able to implement the torque demanded from the speed control. In this paper, two potential current control methods for such a speed control loop are examined. A simulation of the drive system disturbance reaction shows which current control method is better suited for use in the state space speed control. While the hysteresis control, by definition, guarantees a maximum deviation from the current set-point and therefore achieves good control performance, the performance of the field-oriented control depends on the tuning of the controller parameters. Depending on the drive systems resonant frequency, the total time constant used in the controller tuning equations must not exceed a certain limit, otherwise the speed control performance degrades. If a current control is to be implemented for a given drive system, a comparison of the resonant frequency and the total time constant, achievable in this drive system, can reveal if the field-oriented control offers sufficient dynamics in the current control loop.
机译:在高动力驱动系统中,状态空间速度控制方法可用于抑制机械振荡。尽管完整的状态空间控制允许任意的速度控制环动力学,但实际上,这些受基础电流控制及其在电机中实现所需转矩的能力所限制。如果使用状态空间速度控制,则当前的控制方法必须能够实现速度控制所需的转矩。在本文中,研究了用于这种速度控制回路的两种潜在的电流控制方法。驱动系统扰动反应的仿真表明哪种电流控制方法更适合用于状态空间速度控制。顾名思义,磁滞控制可保证与当前设定点的最大偏差,因此可获得良好的控制性能,而磁场定向控制的性能则取决于控制器参数的调整。取决于驱动系统的共振频率,控制器调整方程式中使用的总时间常数不得超过特定限制,否则速度控制性能会下降。如果要对给定的驱动系统实施电流控制,则在此驱动系统中可实现的谐振频率与总时间常数的比较可以揭示出磁场定向控制是否在电流控制回路中提供了足够的动力。

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