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Speed control for BLDC Drive with nonlinear fuzzy PID control based on DSP and FPGA

机译:基于DSP和FPGA的非线性模糊PID控制BLDC驱动器的速度控制。

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Because of its high performance, brushless DC motors are widely used in vehicles. But the brushless DC motor speed system itself is easily influenced by the parameter variation, the cogging torque and the load disturbance. And some complex algorithms to overcome the deficiency are difficult to implement on a single DSP chip. To solve the problem, the paper represents a nonlinear PID controller based on DSP and FPGA. A functional design of FPGA in a brushless DC motor system based on FPGA and DSP was completed by using modular design method. All the function modules are programmed by Very-High-Speed Integrated Circuit Hardware Description Language (VHDL). The simulation and experiment results indicate that nonlinear PID can improve the performances of the servo system in rapidity, control accuracy, adaptability and robustness.
机译:由于其高性能,无刷直流电动机被广泛应用于车辆。但是无刷直流电动机速度系统本身很容易受到参数变化,齿槽转矩和负载干扰的影响。并且克服一些缺陷的一些复杂算法很难在单个DSP芯片上实现。为了解决这个问题,本文提出了一种基于DSP和FPGA的非线性PID控制器。利用模块化设计方法,完成了基于FPGA和DSP的无刷直流电动机系统中FPGA的功能设计。所有功能模块均通过超高速集成电路硬件描述语言(VHDL)进行编程。仿真和实验结果表明,非线性PID可以提高伺服系统的速度,控制精度,适应性和鲁棒性。

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