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Maximum-likelihood extremum seeking control of microalgae cultures

机译:Microalgae培养的最大似然肢体寻求控制

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This paper proposes a model-free extremum seeking control (ESC) approach to optimize the productivity of continuous cultures of microalgae, considering the dilution rate and the light intensity as manipulated variables, and the biomass concentration as single measurement. The resulting two-input single-output optimization problem is first solved using a recursive least-squares strategy based on the representation of the process by a Hammerstein block-oriented model. In order to face the presence of noise on the regressor variables (input and output signals), the problem is then reformulated as a maximum-likelihood estimation problem, which is solved on a moving horizon. Simulation results demonstrate the method performance.
机译:本文提出了一种无模型的极值寻求控制(ESC)方法,以优化微藻的连续培养的生产率,考虑到作为操纵变量的稀释率和光强度,以及作为单一测量的生物质浓度。 首先使用基于Hammerstein块导向模型的过程的表示来使用递归最小二乘策略来解决所得到的两输入单输出优化问题。 为了面对回归变量(输入和输出信号)对噪声的存在,然后将问题重新重新重新重新重新重新重新估算,这在移动地平线上得到解决。 仿真结果表明了方法性能。

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