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王福利

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期刊论文

PID Based Sliding Mode Controller for Nonlinear Processes

王福利Mingzhong Li Fuli Wang and Furong Gao*

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摘要/描述

Sliding mode control (SMC) has excellent robustness to model uncertainties and disturbances. This would make SMC an ideal scheme for process control applications where model uncertainties and disturbances are common. The existing SMC, however, has the major drawback of control chattering, i.e., the controller output is a discontinuous high frequency switching signal. This makes SMC not suitable for most chemical processes where the manipulated variables are continuous and where high frequency changes are not permitted. To eliminate chattering, a new PID based sliding mode control (PIDSMC) suitable for chemical process is proposed here. The proposed control system consists of three components: a compensation of process nonlinearity, a linear feedback of state tracking errors, and a PID control of sliding surface function. The chattering is eliminated via the replacement of the discontinuous switching in the SMC by a continuous input determined by a PID scheme. An adaptive strategy is proposed to tune the PID parameters on-line to control the process states onto a sliding surface that characterizes the closed-loop performance. The proposed algorithm has been shown to be effective in controlling an inverted pendulum system and a typical pH neutralization process.

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【免责声明】以下全部内容由[王福利]上传于[2005年01月27日 00时51分31秒],版权归原创者所有。本文仅代表作者本人观点,与本网站无关。本网站对文中陈述、观点判断保持中立,不对所包含内容的准确性、可靠性或完整性提供任何明示或暗示的保证。请读者仅作参考,并请自行承担全部责任。

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