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Modeling and Control of Roller Compaction for Pharmaceutical Manufacturing Part II: Control System Design

机译:制药业辊压成型的建模与控制第二部分:控制系统设计

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Roller compaction is the major process of dry granulation which is attractive to heat or moisture-sensitive pharmaceutical products. Currently, the product quality of roller compaction is analyzed off-line in the quality control lab. In this work, we demonstrate how online process control can be applied on roller compaction using the simulator built in Part I of this paper. Different control strategies are discussed: multi-loop proportional–integral–derivative, linear model predictive control (MPC), and nonlinear MPC. The MPC strategy provides a systematic approach to design the multivariable control system. The simulation results show that the linear MPC can serve as a high-performance control strategy for roller compaction with the trade-off between the control performance and computational complexity. Such enhanced process control facilitates the FDA’s process analysis technology initiative.
机译:辊压实是干法制粒的主要过程,对热或对湿气敏感的药品具有吸引力。当前,在质量控制实验室中离线分析压路机的产品质量。在这项工作中,我们演示了如何使用本文第一部分中构建的模拟器将在线过程控制应用于压实辊。讨论了不同的控制策略:多环比例-积分-导数,线性模型预测控制(MPC)和非线性MPC。 MPC策略提供了一种设计多变量控制系统的系统方法。仿真结果表明,线性MPC可以作为辊压实的高性能控制策略,并在控制性能和计算复杂度之间进行权衡。这种增强的过程控制有助于FDA的过程分析技术计划。

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