A fuzzy-evaluated gain scheduling approach for the PID control of a pressure plant

Esteban Tamayo, Christian Zuluaga, H. Álvarez
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Abstract

A fuzzy gain scheduling routine is combined with the well-known PID algorithm to allow the new structure to deal with non-linearities of the process. It is shown that both process gain and integral time change along the operation range, due to non-linear behavior of the process. In current gain scheduling applications, the gain and integral time commutation is abrupt, producing internal disturbances to the closed loop. The issue of these variations and their implication on the controller performance is discussed and solved. Fuzzy modeling is used here as an useful tool for solving the commutation problem. Simulation studies and experimental data show satisfactorily how the proposed algorithm improves the performance of the controller over a large operation range.
压力装置PID控制的模糊评估增益调度方法
将模糊增益调度程序与著名的PID算法相结合,使新结构能够处理过程的非线性。结果表明,由于过程的非线性特性,过程增益和积分时间沿操作范围变化。在电流增益调度应用中,增益和积分时间的换相是突然的,会对闭环产生内部扰动。讨论并解决了这些变化及其对控制器性能的影响。这里使用模糊建模作为解决换相问题的有用工具。仿真研究和实验数据令人满意地表明,该算法在较大的工作范围内提高了控制器的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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