Discrete-Continuous Combined Output Control System for Non-Affine Plant with Unknown State Delay

E. L. Eremin, L. V. Nikiforova, E. A. Shelenok
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Abstract

The article deals with the problem of construction of the system discrete regulator for the output control of non-affine plant with state delay which mathematical model is priory parametrically and structurally undefined. Within the hyperstability criterion, L-dissipativity conditions, as well as an implicit reference model and filters-correctors in the main control loop, the issues of using the combined regulator with minimal structural complexity but ensuring the control goal achievement in a given class of non-affine plants with unknown state delay are considered. The continuous models method is used to construct the discrete control loop. This method allows constructing the discrete control algorithms using their continuous analogues which were synthesized with the help of some analytical procedure (in this case on the base of hyperstability criterion). In the last part of the paper the results of the obtained control system simulation are shown.
具有未知状态延迟的非仿射对象离散-连续联合输出控制系统
研究了数学模型为先验参数和结构未定义的状态时滞非仿射对象输出控制系统离散调节器的构造问题。在超稳定判据、l耗散条件、隐式参考模型和主控制回路中的滤波校正器的条件下,考虑了在给定的一类未知状态时滞的非仿射对象中,如何在保证控制目标实现的前提下,使用结构复杂度最小的组合调节器。采用连续模型法构造离散控制回路。该方法允许使用离散控制算法的连续类似物来构造离散控制算法,这些类似物是在一些分析程序的帮助下合成的(在这种情况下是基于超稳定判据)。最后给出了控制系统仿真的结果。
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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