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A switching adaptive controller for the reduction of commutation torque ripple in BLDCM drives

机译:用于减少BLDCM驱动器中换向转矩脉动的开关自适应控制器

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A switching adaptive controller with commutation delay compensation is proposed to control the torque output and to reduce commutation torque ripple in uncertain brushless DC motor (BLDCM) drives. After deriving the error dynamics, the conduction and commutation periods of the drive is taken into account separately, and two different controllers are designed for each operation region of the current loop of BLDCM drives. All the system constants in the mathematical model of the drive are considered uncertain, and adaptation rules are derived for these unknown parameters. The stability of the closed-loop system is shown by a common Lyapunov function, and the convergence of the current error to zero is proved as well. Finally, a commutation delay compensation scheme is introduced and added to the controller structure. Various numerical simulations are performed for different working conditions to test the viability of the proposed controller.
机译:提出了一种具有换向延迟补偿的开关自适应控制器,以控制转矩输出并减少不确定的无刷直流电动机(BLDCM)驱动器中的换向转矩脉动。在得出误差动态之后,分别考虑驱动器的导通和换向周期,并为BLDCM驱动器电流回路的每个操作区域设计了两个不同的控制器。驱动器数学模型中的所有系统常数都被认为是不确定的,并且针对这些未知参数得出了适应规则。闭环系统的稳定性由一个通用的Lyapunov函数表示,并且证明了电流误差收敛于零。最后,引入了换向延迟补偿方案并将其添加到控制器结构中。针对不同的工作条件进行了各种数值模拟,以测试所提出控制器的可行性。

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