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Direct-phase modelling of isolated brushless exciter-alternator unit including the magnetic nonlinearities

机译:隔离式无刷励磁发电机单元的直接相模型,包括磁非线性

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摘要

Detailed accurate models for brushless alternator units are important for practice and design engineers. The paper presents a state space mathematical model for a standalone unit based on a circuit model in the direct-phase reference frame. Also, a state space mathematical model for an automatic voltage regulator is integrated with the machine model. Due to the existence of the rotating bridge rectifier of the exciter, the topology of the circuit is variable. Therefore, Kron's tensor technique is applied using a variable connection matrix to develop the mathematical model. The model is complete in the sense that it covers all modes of operation of the bridge rectifier. Consequently, it is capable of simulating any loading conditions. To enhance the model accuracy, electromagnetic nonlinearity effects are introduced through developed saturation factors which consider the mutual saturation effects between the main and leakage fluxes. Also, a new saturation concept using dynamic and static inductances is applied. Various transient responses are computed and compared with test results to verify the validity of the presented model.
机译:无刷交流发电机单元的详细,准确的模型对于实践和设计工程师而言非常重要。本文基于直接相位参考系中的电路模型,提出了一个独立单元的状态空间数学模型。而且,用于自动电压调节器的状态空间数学模型与机器模型集成在一起。由于存在励磁器的旋转桥式整流器,因此电路的拓扑是可变的。因此,使用可变连接矩阵来应用Kron张量技术来开发数学模型。该模型是完整的,因为它涵盖了桥式整流器的所有工作模式。因此,它能够模拟任何负载条件。为了提高模型的准确性,通过开发饱和因子引入电磁非线性效应,该饱和因子考虑了主磁通与漏磁通之间的相互饱和效应。此外,应用了使用动态和静态电感的新饱和概念。计算各种瞬态响应并将其与测试结果进行比较,以验证所提出模型的有效性。

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