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An Improved Formulation of Hybrid Model Predictive Control With Application to Production-Inventory Systems

机译:混合模型预测控制应用程序的改进配方生产库存系统

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摘要

We consider an improved model predictive control (MPC) formulation for linear hybrid systems described by mixed logical dynamical (MLD) models. The algorithm relies on a multiple-degree-of-freedom parametrization that enables the user to adjust the speed of setpoint tracking, measured disturbance rejection and unmeasured disturbance rejection independently in the closed-loop system. Consequently, controller tuning is more flexible and intuitive than relying on objective function weights (such as move suppression) traditionally used in MPC schemes. The controller formulation is motivated by the needs of non-traditional control applications that are suitably described by hybrid production-inventory systems. Two applications are considered in this paper: adaptive, time-varying interventions in behavioral health, and inventory management in supply chains under conditions of limited capacity. In the adaptive intervention application, a hypothetical intervention inspired by the Fast Track program, a real-life preventive intervention for reducing conduct disorder in at-risk children, is examined. In the inventory management application, the ability of the algorithm to judiciously alter production capacity under conditions of varying demand is presented. These case studies demonstrate that MPC for hybrid systems can be tuned for desired performance under demanding conditions involving noise and uncertainty.
机译:我们考虑用于混合逻辑动态(MLD)模型描述的线性混合系统的改进的模型预测控制(MPC)公式。该算法依赖于多自由度参数化,该参数化使用户能够在闭环系统中独立调整设定值跟踪,测得的干扰抑制和未测得的干扰抑制的速度。因此,与传统上在MPC方案中使用的目标函数权重(例如移动抑制)相比,控制器的调整更加灵活和直观。控制器的制定是由非传统控制应用的需求所激发的,混合生产-库存系统适当地描述了非传统控制应用的需求。本文考虑了两种应用:行为健康的自适应,时变​​干预和容量受限条件下供应链中的库存管理。在自适应干预应用程序中,检查了一种由快速通道计划启发的假设干预措施,即一种现实生活中的预防性干预措施,用于减少高危儿童的行为障碍。在库存管理应用程序中,提出了算法在需求变化的情况下明智地更改生产能力的能力。这些案例研究表明,在涉及噪声和不确定性的苛刻条件下,可以对混合系统的MPC进行调整以达到所需的性能。

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  • 年(卷),期 -1(21),1
  • 年度 -1
  • 页码 2177525
  • 总页数 36
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