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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Application of a Sinusoidal Internal Model to Current Control of Three-Phase Utility-Interface Converters
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Application of a Sinusoidal Internal Model to Current Control of Three-Phase Utility-Interface Converters

机译:正弦内部模型在三相实用接口转换器电流控制中的应用

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摘要

Three-phase voltage-source converters are used as utility interfaces. In such a case, the converter line currents are required to track sinusoidal references synchronized with the utility grid without a steady-state error. In this paper a current control method based on a sinusoidal internal model is employed. The method uses a sine transfer function with a specified resonant frequency, which is called an S regulator. The combination of a conventional proportional-integral (PI) regulator and an S regulator is called a PIS regulator. The PIS regulator ensures that the steady-state error in response to any step changes in a reference signal at the resonant frequency and 0 Hz reduces to zero. An experiment was carried out using a 1-kVA prototype of three utility-interface converters, a voltage-source rectifier, an active power filter, and static synchronous compensator. Almost perfect current-tracking performance could be observed.
机译:三相电压源转换器用作公用程序接口。在这种情况下,需要转换器线路电流来跟踪与公用电网同步的正弦参考电压,而不会产生稳态误差。本文采用基于正弦内部模型的电流控制方法。该方法使用具有指定谐振频率的正弦传递函数,称为S调节器。传统比例积分(PI)调节器和S调节器的组合称为PIS调节器。 PIS调节器确保在谐振频率和0 Hz下,响应参考信号中任何阶跃变化的稳态误差都减小到零。使用一个由三个公用接口转换器,一个电压源整流器,一个有源功率滤波器和一个静态同步补偿器组成的1-kVA原型进行了实验。可以观察到几乎完美的电流跟踪性能。

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