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High-Speed CurrentdqPI Controller for Vector Controlled PMSM Drive

机译:用于向量控制PMSM驱动器的高速CUNCERDQPI控制器

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High-speed current controller for vector controlled permanent magnet synchronous motor (PMSM) is presented. The controller is developed based on modular design for faster calculation and uses fixed-point proportional-integral (PI) method for improved accuracy. Currentdqcontroller is usually implemented in digital signal processor (DSP) based computer. However, DSP based solutions are reaching their physical limits, which are few microseconds. Besides, digital solutions suffer from high implementation cost. In this research, the overall controller is realizing in field programmable gate array (FPGA). FPGA implementation of the overall controlling algorithm will certainly trim down the execution time significantly to guarantee the steadiness of the motor. Agilent 16821A Logic Analyzer is employed to validate the result of the implemented design in FPGA. Experimental results indicate that the proposed currentdqPI controller needs only 50 ns of execution time in 40 MHz clock, which is the lowest computational cycle for the era.
机译:提出了用于矢量控制永磁同步电机(PMSM)的高速电流控制器。控制器是基于模块化设计开发的,以便更快地计算,并使用固定点比例积分(PI)方法提高精度。 CurrentDQController通常在基于数字信号处理器(DSP)的计算机中实现。然而,基于DSP的解决方案正在达到它们的物理限制,这几十微秒。此外,数字解决方案患有高的实施成本。在本研究中,整体控制器在现场可编程门阵列(FPGA)中实现。 FPGA的整体控制算法的实现肯定会显着修整执行时间,以保证电机的稳定性。 Agilent 16821A逻辑分析仪用于验证FPGA中实现设计的结果。实验结果表明,所提出的CurrentDQPI控制器仅在40 MHz时钟中仅需要50 n个执行时间,这是时代的最低计算周期。

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