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A tube feedback iterative learning control for batch processes

机译:批处理过程的管反馈迭代学习控制

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Optimization-based iterative learning control (OILC) has been widely applied to batch processes due to its fast convergence, good control performance and ability to handle constraints. However, how to guarantee constraint satisfaction and convergence of tracking error in the presence of unknown system nonlinearity remains open in the framework of OILC. It is important to address this issue since unknown nonlinearity is common in practice and detrimental to good control performance. In this paper, we propose a tube feedback OILC to investigate the applicability of linear-model based control strategy on batch processes with an unknown nonlinear term. First, a state feedback control law is designed to stabilize the system. The stabilized system is then decomposed into two subsystems: repeatable and unrepeatable subsystems; Second, an invariant set of states corresponding to the unrepeatable subsystem is computed, based on which an OILC is further developed for the repeatable subsystem to improve the control performance. Meanwhile, the feedback controller steers the states within a tube around the trajectory of OILC. In this way, convergence and constraint satisfaction are ensured simultaneously. Compared with the currently existing methods, the proposed method has the following advantages: (1) generality covering both stable and unstable systems; (2) low computation complexity; and (3) rigorous stability. The simulation results on injection molding velocity control demonstrate that the proposed method has superior performance.
机译:基于优化的迭代学习控制(OILC)由于其快速收敛,良好的控制性能和处理约束的能力而被广泛应用于批处理过程。然而,如何在未知系统非线性存在下保证约束满足和跟踪误差的收敛仍然在油的框架中开放。解决这个问题很重要,因为未知的非线性在实践中是常见的并且对良好的控制性能有害。在本文中,我们提出了一种管反馈油,以研究基于线性模型的控制策略对具有未知非线性术语的批量过程的适用性。首先,旨在稳定系统的国家反馈控制规律。然后将稳定的系统分解成两个子系统:可重复和未重复的子系统;其次,计算与未重复化子系统对应的一组状态,基于该oilc,用于可重复的子系统进一步开发了哪种油,以改善控制性能。同时,反馈控制器将管子围绕油墨轨迹的管内。以这种方式,同时确保收敛和约束满足。与目前现有的方法相比,所提出的方法具有以下优点:(1)覆盖稳定和不稳定的系统的一般性; (2)低计算复杂性; (3)严格的稳定性。注塑速度控制的仿真结果表明,所提出的方法具有卓越的性能。

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