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A Softly Switching Multiple Model Predictive Control for Aero-engines ?

机译:用于Aero-engines的软型预测控制

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This paper presents a multiple model predictive control (MPC) with a softly switching for aero-engines. Firstly, the different local working regions of the nonlinear aeroengines model are linearized. Then, a model predictive controller is designed for each linear model. The traditional hard switching methods for multiple model predictive controllers may result in bad transient behavior. Therefore, a softly switching mechanism is studied in this paper, which adopts the convex combination of the MPC objective functions before and after switching to ensure the smooth transition of aero-engines when switching in adjacent regions. The multi-parametric quadratic programming (MP-QP) algorithm is then used to solve the sub-optimal solution of the problem, which reduces the amount of calculation and obtains an explicit solution. Finally, the reported simulation results of the turbofan engine verify the effectiveness of the suggested algorithm.
机译:本文介绍了一种多模型预测控制(MPC),具有适用于Aero-yentines的软调。 首先,非线性航空发动机模型的不同局部工作区域是线性化的。 然后,为每个线性模型设计模型预测控制器。 多种模型预测控制器的传统硬开关方法可能导致瞬态行为不良。 因此,在本文中研究了软柔和的切换机构,其在切换之前和之后采用MPC物镜功能的凸起组合,以确保在相邻区域切换时气动发动机的平滑过渡。 然后使用多参数二次编程(MP-QP)算法来解决问题的次优求解,这减少了计算量并获得了显式解决方案。 最后,涡轮机发动机的报告仿真结果验证了建议算法的有效性。

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