Morel E, Tartakovsky B, Guiot S R, Perrier M
Biotechnology Research Institute, National Research Council, Montréal, QC, Canada.
Water Sci Technol. 2006;54(4):93-100. doi: 10.2166/wst.2006.530.
Anaerobic digestion model no.1 (ADM1) was used for tuning and performance analysis of the multi-model observer based estimator (mmOBE). The mmOBE was based on the variable structure model (VSM) of the anaerobic digestion model, which consists of several local submodels, each of which describes a typical process state. Depending on the hydraulic retention time, ADM1 simulated the methanogenic, organic overload, and acidogenic states of the process. These simulations allowed for optimising tunable parameters of the mmOBE. Owing to relatively slow process dynamics, a data acquisition interval as large as one day was sufficient to obtain acceptable accuracy. The simulations of mmOBE performance showed excellent rate of mmOBE convergence to ADM1 outputs. Moreover, mmOBE successfully estimated key kinetic parameters, such as maximal transformation rates of CODs, VFAs, and methane. These estimations can be used in the development of the advanced knowledge-based process system, which uses both available measurements and estimations of key kinetic parameters for extended diagnosis of failures and process trend analysis.
厌氧消化1号模型(ADM1)用于基于多模型观测器的估计器(mmOBE)的调谐和性能分析。mmOBE基于厌氧消化模型的变结构模型(VSM),该模型由几个局部子模型组成,每个子模型描述一个典型的过程状态。根据水力停留时间,ADM1模拟了该过程的产甲烷、有机过载和产酸状态。这些模拟有助于优化mmOBE的可调参数。由于过程动态相对较慢,长达一天的数据采集间隔足以获得可接受的精度。mmOBE性能模拟显示mmOBE收敛到ADM1输出的速率极佳。此外,mmOBE成功估计了关键动力学参数,如化学需氧量(COD)、挥发性脂肪酸(VFA)和甲烷的最大转化率。这些估计可用于基于先进知识的过程系统的开发,该系统使用可用测量值和关键动力学参数的估计值进行故障的扩展诊断和过程趋势分析。