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Vector Control Strategy for Multidirectional Power Flow in Integrated Multidrives Starter-Alternator Applications

机译:集成式多驱动器起动发电机应用中的多向功率流矢量控制策略

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The paper deals with the analysis and implementation of a vector control strategy devoted to integrated multidrive systems used in starter alternator applications with several dc buses at different voltage levels. The electromechanical system of the considered multidrive topology is obtained by splitting the conventional stator winding of an induction machine into different n three-phase subunits, maintaining the same magnetomotive force distribution and sharing the same rotor. Each stator unit together with rotor can be considered a submotor, thus the entire electromagnetic system behavior can be considered as the combination of all submotors contributions. The submotors are suitably supplied through standard three-phase inverters whose technical specifications are also established according to the storage unit voltage levels. First, a detailed mathematical representation of the electromagnetic system has been developed, then the conditions to carry out the field orientation in each generic subdrive are determined. Addressing a starter-alternator system, the integrated multidrive configuration has been experimentally tested, highlighting the capability of the proposed approach to efficiently handle multidirectional power flows among the storage units and mechanical system while ensuring high dynamic performance.
机译:本文研究了矢量控制策略的分析和实现,该策略专用于在具有不同电压水平的多个直流母线的起动交流发电机应用中使用的集成多传动系统。通过将感应电机的常规定子绕组分成不同的n个三相子单元,保持相同的磁通势分布并共享相同的转子,可以得到具有多驱动拓扑的机电系统。每个定子单元与转子一起可以被视为一个子电动机,因此整个电磁系统的行为可以被视为所有子电动机的组合。子电动机通过标准的三相逆变器适当地供电,这些三相逆变器的技术规格也根据存储单元的电压水平确定。首先,已经开发出电磁系统的详细数学表示,然后确定在每个通用子驱动器中进行磁场定向的条件。针对起动机-交流发电机系统,该集成式多驱动器配置已通过实验测试,突显了所提出方法的能力,可有效处理存储单元和机械系统之间的多向功率流,同时确保高动态性能。

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