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Reduced order model monitoring and control of a membrane bioreactor system via delayed measurements

机译:通过延迟测量降低膜生物反应器系统的阶次模型监视和控制

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Activated sludge treatment is one of the most widely used processes for wastewater treatment (WWT). These systems are built with sufficient design margin to allow changes in loading and process conditions. This is necessary and prudent to overcome limitations in measurement, monitoring and controlling of WWT process parameters at the desired frequency. Online sensors for mixed liquor suspended solids, chemical oxygen demand (COD), nitrogen, phosphorus, and other parameters available today are limited in application due to high cost and low reliability. Hence, many of the parameters are measured off-line when needed. This paper provides a framework to estimate parameters on-line using limited and delayed measurements. The proposed approach is based on the design of a Bayesian filter such as an extended Kalman filter (EKF), which measures and controls membrane bioreactor system using limited and delayed measurements. The objective is to estimate the states and parameters with limited and delayed measurements. Simulations show the efficacy of the proposed approach.
机译:活性污泥处理是废水处理(WWT)中使用最广泛的过程之一。这些系统以足够的设计余量来构建,以允许更改负载和过程条件。这对于克服WWT工艺参数在所需频率下的测量,监视和控制方面的局限性是必要且谨慎的。由于高成本和低可靠性,当今用于混合液悬浮物,化学需氧量(COD),氮,磷和其他可用参数的在线传感器在应用中受到限制。因此,许多参数在需要时离线测量。本文提供了使用有限和延迟测量值在线估计参数的框架。所提出的方法基于贝叶斯过滤器(例如扩展卡尔曼过滤器(EKF))的设计,该过滤器使用有限和延迟的测量来测量和控制膜生物反应器系统。目的是通过有限和延迟的测量来估计状态和参数。仿真表明了该方法的有效性。

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