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Control of CSTR using firefly and hybrid firefly-biogeography based optimization (BBFFO) algorithm

机译:基于萤火虫和混合萤火虫 - 生物地理的优化控制CSTR(BBFFO)算法

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摘要

Continuous Stirred Tank Reactor (CSTR) is the core of numerous procedures due to its simple structure, low cost, stable and productive activity. This paper presents PID controller tuning by using firefly and hybrid Firefly with biogeography based optimization (BBFFO) algorithms for continuously stirred tank reactor (CSTR). In this paper, BBO-FF is iterated to come to the ideal or the close to the ideal of PID controller parameters. Principle accentuate is given to improve the progression reaction and cost proficiency attributes. The CSTR framework is simulated with the proposed hybrid controller which improves the robustness as well as the behavior of the framework. Simulation results demonstrate the adequacy and the effectiveness of the hybridization also present significant upgrade of the time reaction parameters, for example settling time, rise time, overshoot, and integral time absolute error. Studies appeared that the proposed versatile techniques with metaheuristic calculations are quick and efficient in the reduction of error. Both Firefly and Biogeography based optimization is Metaheuristic methodology. The proposed approach BBFFO-PID is compared with the PSO-PID controller in terms of performance indices. Hybridization of the Firefly algorithm with BBO Algorithm for PID controller tuning of CSTR is simulated on MATLAB 2014Ra.
机译:连续搅拌釜反应器(CSTR)是由于其结构简单,成本低,稳定和生产性能,核心核心。本文介绍了使用萤火虫和混合萤火虫与基于生物地理的优化(BBFFO)算法进行了PID控制器调整,用于连续搅拌罐式反应器(CSTR)。在本文中,BBO-FF迭代到理想或接近PID控制器参数的理想。提高原则突出,以改善进展反应和成本熟练程度。用所提出的混合控制器模拟CSTR框架,该混合控制器可提高鲁棒性以及框架的行为。仿真结果表明,杂交的充分性和有效性也显示了时间反应参数的显着升级,例如稳定时间,上升时间,过冲和积分时间绝对误差。研究似乎提出了具有成群质化计算的多功能技术在减少误差时迅速且有效。萤火虫和生物地理基础的优化都是成质方法。在性能指标方面,所提出的方法Bbffo-PID与PSO-PID控制器进行比较。在MATLAB 2014RA上模拟了对CSTR的PID控制器调整的BBO算法的杂交算法。

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