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Distributed output feedback control for multi-unit system with delayed multirate measurements

机译:具有延迟多速率测量的多单元系统的分布式输出反馈控制

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The aim of this work is to analyze output feedback distributed control framework based on model predictive control (MPC) for multi-unit systems with multirate and delayed measurements. Primary controlled variable(s) is sampled infrequently, and the measurement is available after a delay. The distributed, unit-specific estimators and controllers communicate through selective information transfer based on process knowledge. The distributed state estimator is designed based on sampled state augmentation method to efficiently compute improved state estimates on arrival of the delayed infrequent measurements. The multirate estimators are appropriately modified to incorporate the disturbance model to handle model-plant mismatch (MPM). The proposed implementation is analyzed using two case studies. A linearized, reactor-separator system is used to demonstrate that multirate estimation is required for offset-free tracking. A more complex variant of the reactor-separator system with recycle demonstrates the ability of nonlinear distributed estimator-MPC framework to incorporate infrequent and delayed primary measurements.
机译:这项工作的目的是根据具有多速率和延迟测量的多单元系统的模型预测控制(MPC)来分析输出反馈分布式控制框架。初级控制变量不当采样,测量在延迟之后可用。分布式,单位特定的估计器和控制器通过基于过程知识的选择性信息传输进行通信。分布式状态估计器基于采样状态增强方法设计,以有效地计算延迟不频测量到达的改进状态估计。多型估计器被适当地修改以结合干扰模型来处理模型 - 植物不匹配(MPM)。使用两个案例研究分析了拟议的实施。一种线性化的反应堆分离系统用于证明无偏移跟踪所需的多速率估计。具有回收的反应堆分离系统的更复杂变体演示了非线性分布式估计器-MPC框架的能力,包括不频繁和延迟的主要测量。

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