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Integrated parameter estimation of multi-component thermal systems with demonstration on a combined heat and power system

机译:多部件热力系统的集成参数估计,并在热电联产系统上进行演示

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In experimental models of multi-component thermal systems, small errors in each submodel can propagate detrimentally through the overall model, resulting in large prediction errors as the prediction time increases. These errors can be problematic when using open-loop or feed-forward control schemes. This paper demonstrates the advantages of a whole-system or integrated parameter estimation approach as opposed to the component-by-component parameter estimation approach that is widespread in the literature. The approach is demonstrated on a combined heat and power system at a laboratory facility, and the resulting model is used to predict the system temperatures up to 20 min in advance. Results show that, when compared to conventional component-by-component parameter estimation, the integrated parameter estimation approach improves the model prediction accuracy significantly.
机译:在多组件热系统的实验模型中,每个子模型中的小误差都会有害地传播到整个模型中,随着预测时间的增加,会导致大的预测误差。使用开环或前馈控制方案时,这些错误可能会引起问题。本文演示了与文献中广泛使用的逐组件参数估计方法相比,全系统或集成参数估计方法的优势。该方法在实验室设施的热电联产系统上进行了演示,所得到的模型可用于预测最多20分钟的系统温度。结果表明,与常规的逐组分参数估计相比,集成参数估计方法显着提高了模型预测精度。

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