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The effect of the time-constant of the reference trajectory in predictive control on closed-loop stability: an analytical approach for a particular case

机译:参考轨迹时间常数在闭环稳定性上预测控制中的效果:特定情况的分析方法

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Heuristically, it was claimed in the literature that increasing the time-constant 'T/sub ref/' of the reference trajectory in predictive control improves the closed-loop stability because the controller will be able to tolerate model mismatch which is difficult for a zero time-constant reference trajectory (a pure set-point) to tolerate. On the other hand, many industrial model predictive control (MPC) technologies like SMC-Idcom, HIECON, PFC, etc... use 'T/sub ref/' as the main tuning parameter. Smaller time constants demand more aggressive control, while larger time constants result in less agressive action. One may start with 'T/sub ref/' equal to the open-loop time constant of the control variable, then refine the tuning based on performance/robustness trade-offs. In this paper, the author investigates these issues analytically for linear SISO systems. The analysis done extends the notion of system types in linear control by defining a new type denoted as MGS for which it is possible by using predictive control tools to find analytically a stable equilibrium point for the system and track at the same time a reference trajectory with a gain margin that increases as 'T/sub ref/' increases, improving that way the relative stability of the closed-loop system. MGS systems have wide applications in many areas such as: hybrid systems, power systems, robotic systems, etc.
机译:启发式上,在预测控制中增加参考轨迹的时间常数't / sub ref /'的文献提高了闭环稳定性,因为控制器将能够容忍零零的模型不匹配时间常数参考轨迹(纯设定点)以容忍。另一方面,许多工业模型预测控制(MPC)技术,如SMC-IDCOM,HIECON,PFC等...使用“T / SUB REF /”作为主调谐参数。较小的时间常数需要更具激进的控制,而较大的时间常数导致较少的激进行动。一个人可以从“T / Sub Ref /”开始等于控制变量的开环时间常数,然后基于性能/鲁棒性权衡来细化调谐。在本文中,作者在线性SISO系统分析了解这些问题。通过定义表示为MGS的新型来延伸线性控制中系统类型的概念来延伸到其中,通过使用预测控制工具可以使用预测控制工具来找到系统和轨道的分析稳定的平衡点,同时参考轨迹增加作为'T / Sub Ref /'的增益裕度增加,提高了闭环系统的相对稳定性。 MGS系统在许多领域具有广泛的应用,例如:混合系统,电力系统,机器人系统等。

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