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Performance improvement of PI controllers through dynamic set-point weighting

机译:通过动态设定点加权提高PI控制器的性能

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Responses of high-order systems under Ziegler-Nichols tuned PI controllers (ZNPIs) are characterized by excessive oscillation with a large overshoot. Although, a fixed set-point weighting based PI controller (FSWPI) may decrease the overshoot considerably, it fails to reduce the oscillation in the set-point response. Moreover, both FSWPI and ZNPI exhibit equally poor load regulation. Keeping in mind an overall improved performance, we propose an online dynamic set-point weighting technique for ZNPIs. The dynamic set-point weighting factor ((beta)_(d)) is heuristically derived from the instantaneous process trend. Performance of the proposed dynamic set-point weighting based PI controller (DSWPI) for various second-and third-order processes including a pH process shows a significant improvement during both the set-point and load disturbance responses over other methods. Stability and robustness of the proposed DSWPI are addressed. Effectiveness of the DSWPI is demonstrated through the real-time implementation on a practical DC position control system.
机译:齐格勒-尼科尔斯(Ziegler-Nichols)调谐PI控制器(ZNPIs)下的高阶系统的响应的特征在于过度振荡和大过冲。尽管基于固定设定点加权的PI控制器(FSWPI)可以显着降低过冲,但是它无法减少设定点响应中的振荡。而且,FSWPI和ZNPI都表现出同样差的负载调节。考虑到整体性能的提高,我们提出了针对ZNPI的在线动态设定点加权技术。动态设定点加权因子(β_(d))启发式地从瞬时过程趋势中得出。提议的基于动态设定点加权的PI控制器(DSWPI)在包括pH过程在内的各种二阶和三阶过程中的性能均比其他方法在设定点和负载扰动响应方面均表现出显着改善。提出的DSWPI的稳定性和鲁棒性得到解决。通过在实际的直流位置控制系统上的实时实施,证明了DSWPI的有效性。

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