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A space vector-based rectifier regulator for AC/DC/AC converters

机译:基于空间矢量的整流器稳压器,用于AC / DC / AC转换器

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A voltage-sourced rectifier control scheme for use with AC/DC/AC variable speed drives is presented. A control scheme is derived that directly calculates the duration of time spent on the zero state and on each switching state adjacent to the reference vector, over a constant switching interval, in order to drive the line current vector to the reference vector. In addition, under transient conditions, when deadbeat control is not possible, a control scheme is presented that ensures that the line current vector is driven in the direction of the reference current vector. The current reference for the rectifier controller is derived from the bus voltage error and a feedforward term based on the estimated converter output power. The proposed space vector-based rectifier regulator is shown to exhibit improved harmonic and transient performance over existing per-phase duty cycle prediction methods, especially at modulation indices near unity. The deadbeat control of the rectifier input current is accomplished every half-cycle with constant switching frequency while still symmetrically distributing the zero state within the half-cycle period.
机译:提出了一种用于AC / DC / AC变速驱动器的电压源整流器控制方案。导出控制方案,该方案直接计算在恒定的切换间隔内花费在零状态和邻近于参考矢量的每个开关状态上的时间的持续时间,以将线电流矢量驱动到参考矢量。另外,在瞬态条件下,当不可能进行无差拍控制时,提出了一种控制方案,可确保在参考电流矢量的方向上驱动线电流矢量。整流器控制器的电流参考源于母线电压误差和基于估算的转换器输出功率的前馈项。结果表明,与现有的每相占空比预测方法相比,拟议中的基于空间矢量的整流器稳压器具有更高的谐波和瞬态性能,尤其是在调制指数接近于1时。整流器输入电流的无差拍控制以恒定的开关频率在每个半周期内完成,同时仍在半周期内对称地分配零状态。

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