Autotuning for delay systems: An algebraic approach

R. Prokop, J. Korbel, R. Matušů
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Abstract

In this paper, principles for continuous-time controllers with utilization in autotuning schemes are studied. Design and tuning of proposed controllers is performed by algebraic tools where transfer functions are regarded as elements of the field of fractions associated with an appropriate ring according to the desired properties. The emphasis of designed autotuners is laid to SISO systems with time delays. Autotuners then represent a combination of a relay feedback identification test and some control design method. Within the scope of this contribution, models with up to three parameters are estimated by means of a single asymmetrical relay experiment. Then a stable low order transfer function with a time delay term is identified. Then, the control design is based on the ring of proper and stable rational functions (RPS). Controller parameters are derived through a general solution of a linear Diophantine equation and a generalization for a two degree of freedom (2DOF) control structure is performed. A final controller can be tuned by a scalar real parameter m>0. The presented philosophy covers a generalization of PID controllers. The analytical simple rule is derived for aperiodic control response in the RPS case. Autotuning principles then combine asymmetrical relay feedback tests with a control synthesis. A Matlab program for automatic design and simulation was developed and various simulations performed and analyzed.
时滞系统的自整定:一种代数方法
本文研究了连续时间控制器在自整定方案中的应用原理。所提出的控制器的设计和调整是由代数工具执行的,其中传递函数被视为与根据所需性质的适当环相关联的分数域的元素。所设计的自调谐器的重点放在具有时滞的SISO系统上。然后自动调谐器代表了继电器反馈识别测试和一些控制设计方法的组合。在这一贡献的范围内,有多达三个参数的模型估计通过一个单一的不对称继电器实验。然后确定了一个具有时滞项的稳定低阶传递函数。然后,基于合理稳定有理函数环(RPS)进行控制设计。通过线性丢番图方程的通解推导出控制器参数,并对二自由度控制结构进行了推广。最终控制器可以通过标量实参数m>来调谐。所提出的理念涵盖了PID控制器的泛化。导出了RPS情况下非周期控制响应的解析简单规则。然后,自动调谐原理将不对称继电器反馈测试与控制合成相结合。开发了自动设计与仿真的Matlab程序,并进行了各种仿真分析。
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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