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Model predictive control utilizing fuel and moisture soft-sensors for the BioPower 5 combined heat and power (CHP) plant Original

机译:利用燃料和水分软传感器对BioPower 5热电联产工厂进行模型预测控制

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摘要

This paper presents a model predictive control (MPC) strategy for efficient energy production in BioGrate boiler. In addition to compensating for the main disturbances caused by variations in fuel quality such as fuel moisture content, and variations in fuel feed, this strategy models water evaporation, and models and controls the fuel bed height of the grate. Usually, combustion power in a furnace have been estimated by utilizing oxygen consumption. There is however a need for more accurate prediction and control of combustion power, which is greatly affected by the fuel bed height and fuel moisture content. It is shown that water evaporation and thermal decomposition of dry fuel can be estimated by utilizing fuel moisture soft-sensor and oxygen consumption calculations respectively. As a result, the primary air can be adjusted to produce the necessary combustion power, and the power output of the boiler can be accurately predicted. This enables efficient stabilization of plant operations. To verify the model, experiments were performed at a BioPower 5 CHP plant, which utilizes BioGrate combustion technology to enable the use of wet biomass fuels with a moisture content as high as 65%. Then the MPC strategy was compared with the currently used control strategy. Finally, the results are presented, analyzed, and discussed.
机译:本文提出了一种用于生物炉排锅炉高效能源生产的模型预测控制(MPC)策略。除了补偿由燃料质量变化(例如燃料水分含量和燃料进料变化)引起的主要干扰外,该策略还可以对水蒸发进行建模,并对炉rate的燃料床高度进行建模和控制。通常,已经通过利用氧气消耗来估计炉中的燃烧功率。但是,需要对燃烧功率进行更精确的预测和控制,这很大程度上受燃料床高度和燃料水分含量的影响。结果表明,分别利用燃料水分软传感器和氧气消耗量计算可以估算干燃料的水蒸发和热分解。结果,可以调节一次空气以产生必要的燃烧功率,并且可以准确地预测锅炉的功率输出。这样可以有效稳定工厂的运营。为了验证模型,在BioPower 5 CHP工厂进行了实验,该工厂利用BioGrate燃烧技术来使用水分含量高达65%的湿生物质燃料。然后将MPC策略与当前使用的控制策略进行了比较。最后,对结果进行了介绍,分析和讨论。

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