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DSP-based SVM generation algorithm for DFIM

机译:DFIM的基于DSP的SVM生成算法

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Although the inverters have traditionally been designed as analog circuitry, digital inverters are now preferred. These devices use low-cost microcontrollers or digital signal processors (DSP) and offer sophisticated control algorithms with highly flexible software, the ability to add user interfaces, reduce components, introduce testing procedures, and increase reliability. Generation of DSP-based patterns to control voltage source inverters substantially helped the development of modern electric drives used in various applications. Although the DSP control is well known, there are few papers that cover in detail the control signal generation methodology. Compared to the sinus PWM, the space vector modulation (SVM) present more advantages, (like frequency commutation, implementation…etc.)Specially, in machine direct control strategy: direct torque control or direct power control. This paper presents theoretical and experimental aspects for DSP-based algorithm to generate SVM signals. The SVM generation algorithm is written in Assembly language so it can be reused easily, in addition to the flexibility it provides in terms of changing the SVM switching frequency and the fundamental frequency of the inverter output voltage.
机译:尽管传统上将逆变器设计为模拟电路,但现在首选数字逆变器。这些设备使用低成本的微控制器或数字信号处理器(DSP),并提供具有高度灵活的软件的复杂控制算法,添加用户界面,减少组件,引入测试程序并提高可靠性的能力。生成基于DSP的模式来控制电压源逆变器,极大地帮助了各种应用中现代电驱动器的开发。尽管DSP控制是众所周知的,但很少有论文详细介绍控制信号生成方法。与正弦脉宽调制相比,空间矢量调制(SVM)具有更多的优势(例如频率换向,实现等),特别是在机器直接控制策略中:直接转矩控制或直接功率控制。本文介绍了基于DSP的算法生成SVM信号的理论和实验方面。 SVM生成算法是用汇编语言编写的,因此除了在更改SVM开关频率和逆变器输出电压的基频方面提供的灵活性外,还可以轻松地重复使用。

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