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FPGA-Based Sensorless PMSM Speed Control Using Reduced-Order Extended Kalman Filters

机译:使用降阶扩展卡尔曼滤波器的基于FPGA的无传感器PMSM速度控制

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This paper presents the design and implementation of a field-programmable gate array (FPGA)-based architecture for the speed control of sensorless permanent-magnet synchronous motor (PMSM) drives. For the reduction of computation resources, as well as accuracy improvement in the rotor position estimation, a parallel reduced-order extended Kalman filter (EKF) is proposed in this work. Compared with an EKF, the system order is reduced and the iteration process is greatly simplified, resulting in significant savings of resource utility, while maintaining high estimation performance. The whole control system includes a current-control-and-coordinate-transformation unit, a proportional–integral (PI) speed controller, and other accessory modules, all implemented in a single FPGA chip. A hardware description language is adopted to describe advantageous features of the proposed control system. Moreover, the finite-state-machine method is applied with the purpose to reduce logic elements used in the FPGA chip. The validity of the approach is verified through simulation based on the Modelsim/Simulink cosimulation method. Finally, experimental results are obtained on an FPGA platform with an inverter-fed PMSM to show the feasibility and effectiveness of the proposed system-on-programmable-chip for PMSM drives.
机译:本文介绍了基于现场可编程门阵列(FPGA)的体系结构的设计和实现,该体系结构用于无传感器永磁同步电动机(PMSM)驱动器的速度控制。为了减少计算资源,以及提高转子位置估计的精度,在这项工作中提出了并行的降阶扩展卡尔曼滤波器(EKF)。与EKF相比,减少了系统顺序,大大简化了迭代过程,从而显着节省了资源利用率,同时保持了较高的估计性能。整个控制系统包括一个电流控制和坐标转换单元,一个比例积分(PI)速度控制器以及其他附件模块,所有这些模块均在单个FPGA芯片中实现。采用硬件描述语言来描述所提出的控制系统的有利特征。此外,应用有限状态机方法的目的是减少FPGA芯片中使用的逻辑元件。通过基于Modelsim / Simulink协同仿真方法的仿真,验证了该方法的有效性。最后,在带有逆变器供电的PMSM的FPGA平台上获得了实验结果,表明了所提出的PMSM驱动器的系统可编程芯片的可行性和有效性。

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