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Combining Time and Frequency Domain Design in Current Control to Optimize Command and Disturbance Response

机译:在电流控制中将时域和频域设计相结合以优化命令和干扰响应

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This paper presents a model-based design method for current controllers of pulse-width modulated converters. It demonstrates how the command-tracking and disturbance rejection behavior of current controllers must be designed separately via appropriate state-feedback and feedforward paths, as well as feasible references to yield an optimized system behavior. The method features a state-feedback design in the frequency domain that optimizes the load and disturbance voltage response and illustrates important design limitations. The state-feedback design in the frequency domain is effectively linked to the time domain to facilitate a physically understanding of all control design decisions. For optimized, high-bandwidth command tracking, a trajectory filter generates feasible references for the state-feedback control, as well as for command-feedforward. The trajectory filter takes into account the available voltage margin and limits the di/dt of the trajectories to prevent saturation of the feedback controller and eliminate any windup issues. The proposed design method is evaluated based on experiments that validate its wide applicability.
机译:本文提出了一种基于模型的脉宽调制转换器电流控制器设计方法。它演示了如何必须通过适当的状态反馈和前馈路径以及可行的参考来分别设计电流控制器的命令跟踪和干扰抑制行为,以产生优化的系统行为。该方法在频域中具有状态反馈设计,可优化负载和干扰电压响应并说明重要的设计局限性。频域中的状态反馈设计有效地链接到时域,以促进对所有控制设计决策的物理理解。对于优化的高带宽命令跟踪,轨迹过滤器会为状态反馈控制以及命令前馈生成可行的参考。轨迹滤波器考虑了可用的电压裕量,并限制了轨迹的di / dt,以防止反馈控制器饱和并消除任何缠绕问题。根据验证了其广泛适用性的实验对提出的设计方法进行了评估。

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