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首页> 外文期刊>Trends in Ecology & Evolution >Inductor Saturation Compensation With Resistive Decoupling for Single-Phase Controlled VSC Systems
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Inductor Saturation Compensation With Resistive Decoupling for Single-Phase Controlled VSC Systems

机译:用于单相控制VSC系统的电阻去耦的电感器饱和补偿

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摘要

In voltage-source converter systems, utilization of filter inductors with deep saturation characteristics is often advantageous because of the improved size, cost, and efficiency. However, with the use of conventional current regulation methods, the inductor saturation results in significant dynamic performance loss and poor steady-state current waveform quality. This paper proposes the saturation compensation with resistive decoupling (SCRD) method to overcome these performance issues. The method converts the nonlinear inductor of the plant to a fictitious linear inductor such that linear current regulators can perform satisfactorily. The steady-state and dynamic performances of SCRD are investigated in detail in comparison with other methods and advantageous performance attributes of SCRD are demonstrated on a 1.5-kW grid-connected system via simulations and laboratory experiments. In addition, identification of L-R parameters is performed, parameter sensitivity issues are addressed, and satisfactory performance is demonstrated.
机译:在电压源转换器系统中,由于提高的尺寸,成本和效率,具有深度饱和特性的滤波器电感器的利用通常是有利的。然而,随着传统的电流调节方法的使用,电感饱和度导致显着的动态性能损失和稳态电流波形质量差。本文提出了利用电阻去耦(SCRD)方法来克服这些性能问题的饱和补偿。该方法将工厂的非线性电感转换为虚拟线性电感器,使得线性电流调节器可以令人满意地执行。与SCRD的稳态和动态性能与SCRD的其他方法和有利的性能属性进行了详细研究,并通过模拟和实验室实验在1.5 kW网格连接系统上进行了说明。此外,执行L-R参数的识别,解决了参数灵敏度问题,并且对令人满意的性能进行了令人满意的。

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