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Emission limited model predictive control of a small-scale biomass furnace

机译:小型生物质炉的排放有限模型预测控制

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This paper presents the application of an emission limiting model-based predictive controller for a small-scale biomass grate furnace. The furnace has a nominal power of 100 kW with wood pellets as fuel, but it can be operated with different fuels as well. The model predictive approach extends the existing static feedforward controller of the investigated furnace with a dynamic feedback controller that is able to improve the combustion performance. Simultaneously, the formation of carbon monoxide emissions is minimized within the prediction horizon based on an available emission estimation model for pellets. The results obtained from closed-loop measurements show that the control concept is able to reduce carbon monoxide emissions in partial load operation up to four times while the control error of the supply water temperature for heating is nearly halved during transient operation. This is achieved by incorporating the emission estimation model into the constrained optimization of the predictive controller. Additional results obtained from closed-loop experiments for different fuel types with varying water contents demonstrate the advantages of the proposed model-based approach and its robustness with respect to typical uncertainties of the combustion process.
机译:本文介绍了用于小型生物质炉炉的发射限制模型的预测控制器的应用。炉子具有100 kW的标称功率,具有木质颗粒作为燃料,但它也可以用不同的燃料操作。模型预测方法通过动态反馈控制器延伸了所研究的炉子的现有静态馈送控制器,该控制器能够提高燃烧性能。同时,基于用于颗粒的可用排放估计模型,在预测地平线内最小化一氧化碳排放的形成。从闭环测量中获得的结果表明,控制概念能够将部分负载操作中的一氧化碳排放量减少四次,而在瞬态操作期间供电水温的控制误差几乎减半。这是通过将发射估计模型结合到预测控制器的受限优化来实现的。从不同的水内容物的不同燃料类型获得的额外结果证明了所提出的基于模型的方法及其对燃烧过程典型不确定性的鲁棒性的优点。

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