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Implementing ADM1 for plant-wide benchmark simulations in Matiab/Simulink

机译:在Matiab / Simulink中为工厂范围内的基准仿真实现ADM1

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The IWA Anaerobic Digestion Model No. 1 (ADM1) was presented in 2002 and is expected to represent the state-of-the-art model within this field in the future. Due to its complexity the implementation of the model is not a simple task and several computational aspects need to be considered, in particular if the ADM1 is to be included in dynamic simulations of plant-wide or even integrated systems. In this paper, the experiences gained from a Matlab/Simulink implementation of ADM1 into the extended COST/IWA Benchmark Simulation Model (BSM2) are presented. Aspects related to system stiffness, model interfacing with the ASM family, mass balances, acid base equilibrium and algebraic solvers for pH and other troublesome state variables, numerical solvers and simulation time are discussed. The main conclusion is that if implemented properly, the ADM1 will also produce high-quality results in dynamic plant-wide simulations including noise, discrete sub-systems, etc. without imposing any major restrictions due to extensive computational efforts.
机译:IWA 1号厌氧消化模型(ADM1)于2002年推出,有望在将来代表该领域的最新模型。由于模型的复杂性,模型的实现不是一项简单的任务,因此需要考虑几个计算方面,尤其是在将ADM1包含在整个工厂甚至整个系统的动态仿真中时。本文介绍了从ADM1的Matlab / Simulink实现到扩展的COST / IWA基准仿真模型(BSM2)的经验。讨论了与系统刚度,与ASM系列的模型接口,质量平衡,酸碱平衡和用于pH值和其他麻烦状态变量的代数求解器,数值求解器以及仿真时间有关的方面。主要结论是,如果实施得当,ADM1还将在整个工厂范围内的动态仿真(包括噪声,离散子系统等)中产生高质量的结果,而不会由于大量的计算工作而受到任何重大限制。

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