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Dynamical Modeling, Simulation and Analysis for Voltage Regulation System of Hybrid Excitation Doubly Salient Generator

机译:混合励磁电压调节系统的动态建模,仿真和分析双重凸起发电机

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摘要

Hybrid Excitation Doubly Salient Generator (HEDSG) with parallel magnetic circuits is performed in this paper, and the main flux in the machine is determined by the permanent magnet and the field coils. The structure and working principle of the generator are described in detail. In order to build the voltage regulation system of HEDSG, a bidirectional excitation voltage regulator is proposed, which could keep the output voltage of the generator stable by adjusting the field current. The two control loops including excitation current feed-forward and output voltage feedback loops are applied in the voltage regulator. Subsequently, the mathematical model of the voltage regulation system is constructed after the transfer function of the generator is obtained by using system identification method. Moreover, in order to realize the field current bidirectional flow, bipolar pulse width modulation is also applied in the regulator, and the control parameters influencing on the output voltage are analyzed. Lastly, the prototype of bidirectional excitation voltage regulator is designed and theoretical analysis and simulation results are verified by the stable and dynamic experiments.
机译:在本文中执行具有并联磁路的混合激发双重显着发电机(HEDSG),并且机器中的主通量由永磁体和场线圈确定。详细描述了发电机的结构和工作原理。为了构建HEDSG的电压调节系统,提出了一种双向激励电压调节器,其可以通过调节场电流来保持发电机的输出电压。包括激励电流前馈和输出电压反馈环的两个控制环施加在电压调节器中。随后,通过使用系统识别方法获得发电机的传递函数之后构造电压调节系统的数学模型。此外,为了实现场电流双向流动,对稳压器也施加双极脉冲宽度调制,并分析了影响输出电压的控制参数。最后,设计了双向励磁电压调节器的原型,并通过稳定和动态的实验验证了理论分析和仿真结果。

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