Chabani Mohammed Saci, Benchouia M T, Golea A, Abdealziz Almoataz Y, Mossa Mahmoud A
LGEB Laboratory, University of Biskra, BP 145, Biskra 07000, Algeria.
Faculty of Engineering and Technology, Future University in Egypt, Cairo 11835, Egypt.
ISA Trans. 2025 Mar;158:715-734. doi: 10.1016/j.isatra.2024.12.039. Epub 2024 Dec 31.
The paper presents a new sensor-less voltage and frequency control method for a stand-alone doubly-fed induction generator (DFIG) feeding an isolated load. The proposed control approach directly regulates the magnitude and angle of the rotor-flux vector rather than controlling rotor currents or voltages as in classic field oriented control (FOC). To accurately regulate the magnitude and frequency of stator voltage, two separate closed-loop based PI regulators are employed to evaluate the reference signals of the rotor flux vector magnitude and angle, respectively. As the proposed control strategy directly regulates the rotor flux vector in the rotor frame, this helps effectively in avoiding the use of rotor speed/position sensors or computationally intensive rotor speed estimators. Furthermore, the stator current measurements are not required to evaluate the load power requirement, considerably reducing the control implementation cost for the system. Furthermore, the proposed control strategy has the ability to operate in both sub-synchronous and super-synchronous speed modes without the need to identify the operating speed range. Since the method only requires knowledge of rotor resistance, it is extremely simple to use and virtually parameter-independent. To evaluate the performance, effectiveness and robustness of the new controller, extensive simulation and experimental tests of a 3-kW laboratory generator are accomplished for different operating conditions. Additionally, a performance comparison with the classic FOC strategy is made, from which the superiority of the proposed control is clearly confirmed.
本文提出了一种用于向孤立负载供电的独立双馈感应发电机(DFIG)的新型无传感器电压和频率控制方法。所提出的控制方法直接调节转子磁链矢量的幅值和角度,而不是像传统的磁场定向控制(FOC)那样控制转子电流或电压。为了精确调节定子电压的幅值和频率,采用了两个基于闭环的PI调节器,分别用于评估转子磁链矢量幅值和角度的参考信号。由于所提出的控制策略直接在转子坐标系中调节转子磁链矢量,这有助于有效避免使用转子速度/位置传感器或计算量大的转子速度估计器。此外,评估负载功率需求不需要定子电流测量,从而大大降低了系统的控制实施成本。此外,所提出的控制策略能够在亚同步和超同步速度模式下运行,而无需识别运行速度范围。由于该方法只需要知道转子电阻,因此使用极其简单且几乎与参数无关。为了评估新型控制器的性能、有效性和鲁棒性,针对不同运行条件对一台3千瓦实验室发电机进行了广泛的仿真和实验测试。此外,与经典FOC策略进行了性能比较,由此清楚地证实了所提出控制方法的优越性。