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Comparison between sliding model control and vector control for a DSP-based position control applied to squirrel-cage induction motor

机译:滑动模型控制与矢量控制对鼠笼式感应电动机的基于DSP的位置控制的控制和矢量控制

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摘要

The principle of vector control of AC machine enables the dynamic control of AC motors, and induction motors in particular to a level comparable to that of a DC machine. The vector control of currents and voltages results in control of spatial orientation of the electromagnetic fields in the machine and has led to term field orientation. Field oriented control schemes provide significant improvement to the dynamic performance of ac motors. The usual method of induction motor position and torque control, which is becoming an industrial standard, uses the indirect field orientation principle in which the rotor speed is sensed or estimated by rotor position and slip frequency is added to form the stator impressed frequency. Sliding-mode control has gained wide attention because of its simple design and implementation, fast dynamic response, and robustness to parameters variations and load disturbances. This paper proposes a performance comparison between sliding mode-control and field oriented control using synchronous reference applied to a small squirrel-cage induction motor using space vector pulse width modulation(SVPWM) for position and torque control and a digital signal processor and relay feedback method to evaluate the controller parameters.
机译:AC机器的矢量控制原理使得AC电动机的动态控制,特别是与直流机相当的电平相当的电平。电流和电压的矢量控制导致机器中电磁场的空间取向的控制,并导致术语场取向。面向现场的控制方案对AC电动机的动态性能提供了显着的改进。通常是具有工业标准的感应电动机位置和扭矩控制的常规方法使用间接场取向原理,其中通过转子位置和滑动频率感测或估计转子速度和估计的间接场取向原理以形成定子挤压频率。由于其简单的设计和实施,快速动态响应以及参数变化和负载扰动的鲁棒性,滑模控制受到了广泛的关注。本文提出了使用空间矢量脉冲宽度调制(SVPWM)对小鼠笼式感应电动机的滑模控制和现场取向控制的性能比较,用于使用空间矢量脉冲宽度调制(SVPWM),用于位置和扭矩控制以及数字信号处理器和中继反馈方法评估控制器参数。

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