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Neural-fuzzy control system application for monitoring process response and control of anaerobic hybrid reactor in wastewater treatment and biogas production

机译:神经模糊控制系统在废水处理和沼气生产过程中厌氧混合反应器过程响应的监控

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摘要

Based on the developed neural-fuzzy control system for anaerobic hybrid reactor (AHR) in wastewater treatment and biogas production, the neural network with backpropagation algorithm for prediction of the variables pH, alkalinity (Alk) and total volatile acids (TVA) at present day time t was used as input data for the fuzzy logic to calculate the influent feed flow rate that was applied to control and monitor the process response at different operations in the initial, overload influent feeding and the recovery phases. In all three phases, this neural-fuzzy control system showed great potential to control AHR in high stability and performance and quick response. Although in the overloading operation phase II with two fold calculating influent flow rate together with a two fold organic loading rate (OLR), this control system had rapid response and was sensitive to the intended overload. When the influent feeding rate was followed by the calculation of control system in the initial operation phase I and the recovery operation phase III, it was found that the neural-fuzzy control system application was capable of controlling the AHR in a good manner with the pH close to 7, TVA/Alk < 0.4 and COD removal > 80% with biogas and methane yields at 0.45 and 0.30 m~3/kg COD removed.
机译:基于已开发的厌氧混合反应器(AHR)用于废水处理和沼气生产的神经模糊控制系统,采用反向传播算法的神经网络可预测当今的pH,碱度(Alk)和总挥发性酸(TVA)变量时间t用作模糊逻辑的输入数据,以计算进料流量,该流量被用于控制和监视初始,过载进料和恢复阶段不同操作下的过程响应。在所有三个阶段中,这种神经模糊控制系统在控制AHR方面具有巨大的潜力,具有高稳定性,高性能和快速响应能力。尽管在超负荷运行阶段II中,进水流量的两倍计算以及有机物负载率(OLR)的两倍计算,该控制系统具有快速响应能力,并且对预期的超载敏感。当在初始操作阶段I和恢复操作阶段III中计算进水速率并控制系统后,发现神经模糊控制系统应用程序能够在pH值下很好地控制AHR。接近7,TVA / Alk <0.4,COD去除率> 80%,沼气和甲烷产量分别为0.45和0.30 m〜3 / kg COD。

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