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Zero Synchronous Speed Stable Operation Strategy for Speed Sensorless Induction Motor Drive with Virtual Voltage Injection

机译:带有虚拟电压注入的无速度感应电动机驱动器的零同步速度稳定运行策略

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In speed sensorless induction motor drives (SSIMD), the rotor speed is unobservable when synchronous speed we equals to zero. Consequently, SSIMD system has unstable problem when input frequency of motor is closed to zero or equal to zero. This unstable problem results in that the SSIMD technology cannot be applied to motor drive system with gravitational load. In this paper, a virtual voltage injection method, based on adaptive full order observer (AFO), is proposed to solve the unstable problem of SSIMD when the synchronous speed we equals to zero. The virtual voltage injection means the voltage signal is only injected into AFO, there is no signal being injected into the motor. When the synchronous speed we equals to zero, the traditional rotor speed estimation method become invalid, but rotor speed still can be estimated by the injected voltage in the AFO. Finally the feasibility of proposed method is verified by experiments.
机译:在无速度感应电动机驱动器(SSIMD)中,当同步速度等于0时,无法观察到转子速度。因此,当电动机的输入频率接近于零或等于零时,SSIMD系统存在不稳定的问题。这种不稳定的问题导致SSIMD技术无法应用于重力负载的电机驱动系统。本文提出了一种基于自适应全阶观测器(AFO)的虚拟电压注入方法,以解决同步速度为零时SSIMD的不稳定问题。虚拟电压注入意味着电压信号仅被注入到AFO中,而没有信号被注入到电动机中。当同步速度等于零时,传统的转子速度估算方法无效,但仍可以通过AFO中的注入电压估算转子速度。最后通过实验验证了该方法的可行性。

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