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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Medium-Voltage Drive for Induction Machine With Multilevel Dodecagonal Voltage Space Vectors With Symmetric Triangles
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Medium-Voltage Drive for Induction Machine With Multilevel Dodecagonal Voltage Space Vectors With Symmetric Triangles

机译:具有对称三角形的多级十二边形电压空间矢量的感应电机的中压驱动

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摘要

Multilevel inverters with dodecagonal (12-sided polygon) voltage space vector structure have advantages, such as complete elimination of fifth and seventh harmonics, reduction in electromagnetic interference, reduction in device voltage ratings, reduction of switching frequency, extension of linear modulation range, etc., making it a viable option for high-power medium-voltage drives. This paper proposes two power circuit topologies capable of generating multilevel dodecagonal voltage space vector structure with symmetric triangles (for the first time) with minimum number of dc-link power supplies and floating capacitor H-bridges. The first power topology is composed of two hybrid cascaded five-level inverters connected to either side of an open-end winding induction machine. Each inverter consists of a three-level neutral-point-clamped inverter, which is cascaded with an isolated H-bridge making it a five-level inverter. The second topology is for a normal induction motor. Both of these circuit topologies have inherent capacitor balancing for floating H-bridges for all modulation indexes, including transient operations. The proposed topologies do not require any precharging circuitry for startup. A simple pulsewidth modulation timing calculation method for space vector modulation is also presented in this paper. Due to the symmetric arrangement of congruent triangles within the voltage space vector structure, the timing computation requires only the sampled reference values and does not require any offline computation, lookup tables, or angle computation. Experimental results for steady-state operation and transient operation are also presented to validate the proposed concept.
机译:具有十二边形(12面多边形)电压空间矢量结构的多电平逆变器具有以下优点:完全消除了五次和七次谐波,减少了电磁干扰,减少了设备额定电压,降低了开关频率,扩展了线性调制范围等,使其成为大功率中压驱动器的可行选择。本文提出了两种电源电路拓扑结构,它们能够生成具有对称三角形的多级十二边形电压空间矢量结构(首次),并且具有最少数量的直流母线电源和浮动电容器H桥。第一个电源拓扑由连接到开放式绕组感应电机任一侧的两个混合级联五电平逆变器组成。每个逆变器都包含一个三电平中性点钳位逆变器,该逆变器与一个隔离的H桥级联,使其成为五电平逆变器。第二种拓扑结构适用于普通感应电动机。这两种电路拓扑都具有用于所有调制指标(包括瞬态操作)的浮动H桥固有的电容器平衡。提议的拓扑不需要任何预充电电路即可启动。本文还提出了一种简单的空间矢量调制脉宽调制时序计算方法。由于电压空间矢量结构中全等三角形的对称排列,时序计算仅需要采样参考值,而无需任何离线计算,查找表或角度计算。还给出了稳态操作和瞬态操作的实验结果,以验证所提出的概念。

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