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Adaptive Control of Systems with Unknown Nonminimum-Phase Zeros Using Cancellation-Based Pseudo-identification

机译:使用基于消除基于消除的伪识别的具有未知非最小相零的系统的自适应控制

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Adaptive control of linear systems with unknown nonminimum-phase (NMP) zeros remains a significant challenge. Although retrospective cost adaptive control (RCAC) is applicable to NMP systems with known NMP zeros, errors in the knowledge of those zeros can lead to unstable pole/zero cancellation under sufficiently aggressive tuning. To address this problem, this paper provides a numerical investigation of a heuristic extension of RCAC that exploits the propensity of RCAC to cancel NMP zeros, thereby inferring the NMP zeros. This modeling information can be subsequently incorporated within the target model used by RCAC. By focusing on only NMP zeros, this approach is distinct from conventional system identification, which relies on input-output data for model fitting. This cancellation-based technique relies on saturation of the control input and instability of the feedback controller. Simultaneous occurrence of control saturation and controller instability provides a heuristic indicator that the controller has cancelled one or more NMP zero during closed-loop operation. The estimated NMP zeros are subsequently used within a cancellation-based pseudo-identification extension of RCAC to prevent further cancellation of the NMP zeros.
机译:具有未知非最小相(NMP)零的线性系统的自适应控制仍然是一个重大挑战。虽然回顾性成本自适应控制(RCAC)适用于具有已知NMP零的NMP系统,但是在足够侵略性的调谐下,这些零的知识中的错误可能导致不稳定的极/零消除。为了解决这个问题,本文提供了对RCAC的启发式扩展的数值研究,该启发式扩展利用RCAC的倾向取消NMP零,从而推断出NMP零。随后可以在RCAC使用的目标模型中结合该建模信息。通过仅关注NMP零,这种方法与传统的系统识别不同,依赖于模型配件的输入输出数据。基于取消的技术依赖于反馈控制器的控制输入和不稳定性的饱和度。同时出现控制饱和度和控制器不稳定性提供了一种启发式指示器,即控制器在闭环操作期间取消了一个或多个NMP零。随后在RCAC的基于消除的伪鉴定延伸的基于消除的伪鉴定延伸中,以防止估计的NMP零,以防止NMP零。

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