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Space vector modulation and field oriented control: using transputers and signal processing for speed control of induction motors

机译:空间矢量调制和现场定向控制:使用转速器和信号处理进行感应电动机的速度控制

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The authors describe an implementation of a field-oriented induction motor control system using space vector modulation (SVM). The control strategy relies on using transformations which enable the complex dynamic structure of an induction motor to be simplified and controlled using conventional controller design techniques. These transformations require high-speed processing if the sampling criteria are to be met. If SVM is to be implemented in software, which is desirable for resolution and flexibility, a system with substantial processing speed will be required if inverter switching frequencies of 5-10 kHz are to be achieved. The above throughput requirements dictate the use of a multiprocessor system, which is difficult to implement with conventional microprocessor architectures. Transputers and occam, on the other hand, offer high processing speeds and straightforward multiprocessing, so that the necessary throughput can be achieved by using faster transputers or by using more transputers with minimal software changes and overhead. The authors examine some of the issues involved in designing this system and present some of the results obtained to date.
机译:作者描述了使用空间矢量调制(SVM)的面向现场的感应电动机控制系统的实现。控制策略依赖于使用传统控制器的传感器的变换,其使用传统的控制器设计技术简化和控制。如果要满足采样标准,这些变换需要高速处理。如果要在软件中实现SVM,这对于分辨率和灵活性期望,如果要实现5-10 kHz的逆变器开关频率,则需要具有大幅处理速度的系统。上述吞吐量要求决定了使用多处理器系统,这难以使用传统的微处理器架构实现。另一方面,转换器和偶尔提供高处理速度和简单的多处理,因此通过使用更快的转换器或使用具有最小软件变化和开销的更多转换器可以实现必要的吞吐量。作者研究了设计该系统所涉及的一些问题,并呈现迄今为止的一些结果。

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