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Sensorless Vector Control of Three-Phase Permanent Magnet Synchronous Motor Based on Model Reference Adaptive System

机译:基于模型参考自适应系统的三相永磁同步电动机无传感器矢量控制

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The speed sensorless vector control system not only saves the speed sensor but also reduces the size of the system device. It reduces the cost and improve the system's operating accuracy and reliability, which has strong practical value and economic benefits. Now many scholars have engaged in research in this area and achieved some results in simulation research, laying a solid foundation for practical applications basis. The model reference adaptive system(MRAS) was developed from the late 1950s which belongs to a type of adaptive system. From the structure, MRAS can be divided into three parts: adjustable model, reference model and adaptive law. The idea of MRAS identification is to use an expression that does not contain unknown parameters as the expected model, and an expression that contains the parameters to be identified is used in the adjustable model. And the two models have the same physical significance of output. Using two models of the difference in the output amount is achieved through the appropriate adaptive law to identify the parameters of the PMSM (Permanent Magnet Synchronous Motor). This paper designs a three-phase PMSM sensorless vector control system based on MRAS. The simulation model and results are given and analyzed.
机译:无速度传感器矢量控制系统不仅节省了速度传感器,而且减小了系统设备的尺寸。它降低了成本,提高了系统的运行精度和可靠性,具有很强的实用价值和经济效益。现在已有许多学者从事这一领域的研究,并在模拟研究中取得了一些成果,为实际应用奠定了坚实的基础。模型参考自适应系统(MRAS)是从1950年代后期开始发展的,属于一种自适应系统。从结构上,MRAS可以分为三个部分:可调模型,参考模型和自适应律。 MRAS识别的想法是使用不包含未知参数的表达式作为预期模型,并在可调模型中使用包含要识别的参数的表达式。并且这两个模型具有相同的输出物理意义。通过适当的自适应定律,使用两种模型来确定输出量的差异,以识别PMSM(永磁同步电动机)的参数。本文设计了一种基于MRAS的三相PMSM无传感器矢量控制系统。给出并分析了仿真模型和结果。

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