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Tube-based Stochastic Nonlinear Model Predictive Control: A Comparative Study on Constraint Tightening

机译:基于管的随机非线性模型预测控制:约束拧紧的比较研究

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This paper presents a comparative study between two constraint-tightening approaches for tube-based stochastic nonlinear model predictive control (SNMPC) with and without terminal constraints. A simple constraint-tightening method based on the exponential decay rate of a δ-Lyapunov function is extended to the stochastic setting. This method uses the notion of incremental stabilizability to alleviate the need for offline, but involved computation of terminal constraints. The proposed method is compared to a SNMPC formulation that employs terminal constraints and Lipschitz constant-based constraint tightening. A comparative analysis is presented on a benchmark continuous stirred-tank reactor problem. Practical approximations for computing terminal sets are discussed in the context of this comparison.
机译:本文对带有和不带有终端约束的基于管的随机非线性模型预测控制(SNMPC)的两种约束紧固方法进行了比较研究。一种简单的基于δ-Lyapunov函数的指数衰减率的约束加紧方法被扩展到随机设置。此方法使用增量稳定度的概念来缓解对脱机的需求,但涉及终端约束的计算。将该方法与采用终端约束和基于Lipschitz基于常数的约束收紧的SNMPC公式进行了比较。对基准连续搅拌釜反应器问题进行了比较分析。在此比较的背景下讨论了计算终端机的实际近似值。

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