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State controllability of a froth flotation cell

机译:泡沫浮选池的状态可控性

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The control goals for a froth flotation cell are to maintain a stable pulp level and maximise the separation between valuable minerals to the concentrate and gangue to the tailings. Only a limited set of manipulated variables are available to achieve a target concentrate grade and tailings grade for a specific pulp level. The froth flotation cell can be represented by a non-linear phenomenological state-space model. The states of the model are the concentration of minerals in the froth and the pulp, and the volume of liquid in the froth and pulp. A state controllability analysis of the model indicates that the states are controllable using air flow-rate, tailings flow-rate, and feed-rate as manipulated variables. Therefore, given these three manipulated variables, a controller should be able to maximise the separation between minerals in the concentrate and tailings, while maintaining a pulp level within acceptable bounds.
机译:泡沫浮选池的控制目标是保持稳定的纸浆水平,并最大程度地将有价值的矿物与精矿和脉石与尾矿之间的分离。对于特定的纸浆水平,只有有限的一组受控变量可用于实现目标精矿品位和尾矿品位。泡沫浮选池可由非线性现象学状态空间模型表示。模型的状态是泡沫和果肉中矿物质的浓度,以及泡沫和果肉中液体的体积。该模型的状态可控性分析表明,使用空气流率,尾矿流率和进给率作为操纵变量可以控制状态。因此,给定这三个受控变量,控制器应能够最大程度地提高精矿中矿物质与尾矿之间的分离程度,同时将纸浆水平保持在可接受的范围内。

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