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Control method for a novel converter topology for permanent magnet drives

机译:新型永磁变频器变频器拓扑的控制方法

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The paper describes a new converter concept for permanent magnet drives and its control. It is called multilevel integrated step-up (MIS) converter, because the new topology enables output voltages higher than the DC link voltage and a multilevel-like output voltage waveform, too. DC/DC converters to stabilize and increase the DC link voltage are not necessary, since DC-link voltage variations can be compensated by control of the MIS converter. The converter comprises internal switched ¿boost-capacitors¿. The machine inductance is used to generate a step-up conversion for the internal capacitor voltage. These points lead to additional degrees of freedom for controlling the system and optimization of important parameters e.g. current ripple or switching frequency. In comparison to standard flying capacitor topologies no upper limit exists for the internal capacitor voltage. This is a unique feature of the MIS converter. The extended operating range is explained with respect to different machine characteristics with a low and high short circuit current ratio. The control scheme shows different ways to control the internal capacitor voltage in relation to machine's power and speed. Additionally, design considerations for the size of the internal boost capacitor are presented.
机译:本文介绍了一种用于永磁驱动器及其控制的新型转换器概念。之所以称为多级集成升压(MIS)转换器,是因为新的拓扑结构还可以使输出电压高于DC链路电压以及类似多级的输出电压波形。不需要DC / DC转换器来稳定和增加DC链路电压,因为可以通过MIS转换器的控制来补偿DC链路电压的变化。转换器包括内部开关的ƒƒÂ,,boost-capacitorsÃÂ,,,‚Â。机器电感用于为内部电容器电压生成升压转换。这些要点导致控制系统和优化重要参数(例如最大功率)的附加自由度。电流纹波或开关频率。与标准飞跨电容器拓扑相比,内部电容器电压没有上限。这是MIS转换器的独特功能。针对具有低短路电流比和高短路电流比的不同机器特性,解释了扩展的工作范围。该控制方案显示了根据机器的功率和速度来控制内部电容器电压的不同方法。此外,还介绍了内部升压电容器尺寸的设计注意事项。

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