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Hierarchical dissolved oxygen control for activated sludge processes

机译:活性污泥工艺的分级溶解氧控制

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A hierarchical controller for tracking the dissolved oxygen (DO) reference trajectory in activated sludge processes is proposed and investigated. The removal of nitrogen and phosphorous from wastewater is considered. Typically, an aeration system itself is a complicated hybrid nonlinear dynamical system with faster dynamics compared to the internal dynamics of the DO in a biological reactor. It is a common approach to neglect these dynamics and also important operational limitations of this system, such as the limits on the allowed frequency of switching of the blowers and on their capacity. The paper proposes a two-level controller to track the DO reference trajectory. The upper level control unit generates trajectories of the desired airflows to be delivered to aerobic zones of the biological reactor. A nonlinear model predictive control algorithm is applied to design this controller. The lower-level controller forces the aeration system to follow these set-point trajectories. The predictive control is also applied to design the lower-level controller based on piecewise linearised hybrid dynamics of the aeration system. The overall hierarchical controller is validated by simulation based on real data records.
机译:提出并研究了用于跟踪活性污泥过程中溶解氧(DO)参考轨迹的分层控制器。考虑从废水中除去氮和磷。通常,曝气系统本身是一个复杂的混合非线性动力学系统,与生物反应器中DO的内部动力学相比,动力学更快。忽略这些动态因素以及该系统的重要操作限制是一种常见的方法,例如对鼓风机切换的允许频率及其容量的限制。本文提出了一种两级控制器来跟踪DO参考轨迹。上级控制单元生成所需气流的轨迹,以输送到生物反应器的好氧区。应用非线性模型预测控制算法来设计该控制器。下层控制器强制通风系统遵循这些设定点轨迹。预测控制也可用于基于曝气系统的分段线性混合动力设计低级控制器。整个分层控制器通过基于真实数据记录的仿真进行验证。

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