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A novel model predictive control scheme based on bees algorithm in a class of nonlinear systems: Application to a three tank system

机译:基于蜂算法的一类非线性系统新型模型预测控制方案:在三缸系统中的应用

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This paper proposes a novel algorithm for utilizing bees algorithm in a model predictive control (MPC) in order to control a class of nonlinear systems. The bees algorithm is utilized in order to solve the open loop optimization problem (OOP), and it is based on the foraging behavior of honey bees. The proposed algorithm makes use of the bees algorithm for minimizing a predefined cost function in order to find the best input signals subject to constraints and a model of the system. The class of systems considered in this paper includes autonomous nonlinear systems without delay and with continuous and discrete inputs. The proposed algorithm is validated by simulating a three tank system as a case study. A comparison between the proposed novel MPC with different predictive horizons and a conventional MPC demonstrates the potential advantages of the proposed method such as reduction in computation time, good convergence toward desired values and ability of control management. Simulations also show the simplicity of applying and efficiency of the proposed algorithm for designing an MPC based on the bees algorithm.
机译:提出了一种在模型预测控制(MPC)中利用蜜蜂算法来控制一类非线性系统的新算法。蜜蜂算法是用来解决开环优化问题(OOP)的,它基于蜜蜂的觅食行为。所提出的算法利用蜜蜂算法来最小化预定的成本函数,以便找到受约束的最佳输入信号和系统模型。本文考虑的系统类别包括无延迟,具有连续和离散输入的自治非线性系统。通过仿真三箱系统作为案例研究验证了所提出的算法。所提出的具有不同预测范围的新型MPC与常规MPC的比较证明了所提出方法的潜在优势,例如减少了计算时间,向期望值的良好收敛性以及控制管理能力。仿真还显示了所提出算法在基于蜜蜂算法的MPC设计中的应用简便性和效率。

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