Model-based adaptive control scheme for benchmark pH-neutralisation process

Sanjay Bhadra, Atanu Panda, P. Bhowmick
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Abstract

Control of pH has always been a critical task because of the highly complex nonlinear characteristic of the titration curve. This paper is concerned about the design of an adaptive nonlinear model-based tracking control scheme and its application in a benchmark pH-neutralisation process. The scheme exploits a deterministic process model to generate the model state which reflects the actual process dynamics, and utilises three different adaptive tuning methods to update the controller gain on real-time basis. Simulation results show that the proposed scheme ensures closed-loop stability and facilitates satisfactory set-point tracking (both time-varying and constant) performance despite parameter variation, exogenous disturbance and measurement noise.
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基于模型的基准ph中和过程自适应控制方案
由于滴定曲线高度复杂的非线性特性,pH的控制一直是一项关键任务。本文研究了一种基于自适应非线性模型的跟踪控制方案的设计及其在基准ph中和过程中的应用。该方案利用确定性过程模型生成反映实际过程动态的模型状态,并利用三种不同的自适应整定方法实时更新控制器增益。仿真结果表明,该方案在参数变化、外源干扰和测量噪声的影响下,仍能保证闭环稳定性,并具有良好的设定点跟踪(时变和恒定)性能。
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