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MODEL-BASED DESIGN OF A CONTROL STRATEGY FOR OPTIMAL START-UP OF A HIGH-STRENGTH NITRIFICATION SYSTEM

机译:基于模型的高强度硝化系统最优启动控制策略设计

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The objective of this study was to define an automatic control loop for the start-up of a high-strength nitrification system to achieve a rich nitrifying biomass from a poor nitrifying sludge by means of simulation tools. The used model considered the nitrification as a two-step model with substrate and non-competitive inhibitions. Two control strategies (on-off controller and proportional-integral (PI) controller) were designed, simulated and compared. The measured variable in the control loops was the sum of ammonium and nitrite concentrations in the effluent and the manipulated variable was the inflow. The objective in the optimisation of both controllers was to increase the inflow of the system as fast as possible without exceeding the maximum ammonium and nitrite concentrations allowed in the effluent. The optimised controllers parameters were used to simulate a 40 days start-up. The results obtained with both strategies were similar, although, the best strategy was the PI controller since it was less oscillatory and the biomass growth was slightly faster.
机译:这项研究的目的是为启动高强度硝化系统定义一个自动控制回路,以通过模拟工具从贫硝化污泥中获得富硝化生物质。使用的模型将硝化作用视为具有底物和非竞争性抑制作用的两步模型。设计,仿真和比较了两种控制策略(开-关控制器和比例积分(PI)控制器)。控制回路中测得的变量是流出物中铵和亚硝酸盐浓度的总和,而操作变量是流入量。优化两个控制器的目的是在不超过废水中允许的最大铵盐和亚硝酸盐浓度的情况下,尽可能快地增加系统的流入量。优化的控制器参数用于模拟40天的启动时间。两种策略获得的结果相似,尽管最好的策略是PI控制器,因为它的振荡更少,生物量的增长也更快。

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