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Modified PI speed controllers for series-excited dc motors fed by dc/dc boost converters

机译:改进的PI速度控制器,用于由DC / DC升压转换器供电的串联励磁DC电动机

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摘要

In drive systems, especially for speed regulation, the use of a series-excited dc-motor is prefered in cases where large load changes may occur. In order to design a controller that achieves a fast torque response, in this paper, a complete system consisting of a dc/dc boost converter and a series-excited dc-motor is considered. For the complete system, a modified nonlinear PI speed controller is proposed that provides directly the duty-ratio input of the converter without needing the conventional current inner-loop. In particular, the constant PI speed controller gains are multiplied by a suitable time function that substantially upgrades the whole nonlinear system dynamic performance. Taking into account the complete nonlinear system model, it is shown that the proposed controller acts on the duty-ratio input of the converter providing a continuous input signal exactly in the permitted range [0,1), achieves precise motor speed regulation independently from system parameters' variations or load torque changes and guarantees closed-loop system stability and convergence to the desired steady-state equilibrium. Finally, the proposed PI controller performance is verified through extended simulation and experimental results under rapid changes of the reference signal and the external load.
机译:在驱动系统中,特别是在速度调节中,如果可能发生较大的负载变化,则首选使用串联励磁直流电动机。为了设计一种能够实现快速转矩响应的控制器,本文考虑了一个由DC / DC升压转换器和一个串联励磁DC电机组成的完整系统。对于整个系统,提出了一种改进的非线性PI速度控制器,该控制器可直接提供转换器的占空比输入,而无需常规电流内环。特别是,恒定的PI速度控制器增益乘以适当的时间函数,可以显着提高整个非线性系统的动态性能。考虑到完整的非线性系统模型,结果表明,所提出的控制器作用于变频器的占空比输入,可提供准确在允许范围[0,1)内的连续输入信号,独立于系统即可实现精确的电动机速度调节参数的变化或负载转矩的变化,并确保闭环系统的稳定性和收敛到所需的稳态平衡。最后,在参考信号和外部负载快速变化的情况下,通过扩展的仿真和实验结果验证了所提出的PI控制器性能。

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