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Adaptive Combination Forecasting Model Based on Area Correlation Degree with Application to China’s Energy Consumption

机译:基于区域相关度的自适应组合预测模型在中国能源消费中的应用

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To accurately forecast energy consumption plays a vital part in rational energy planning formulation for a country. This study applies individual models (BP, GM (1, 1), triple exponential smoothing model, and polynomial trend extrapolation model) and combination forecasting models to predict China’s energy consumption. Since area correlation degree (ACD) can comprehensively evaluate both the correlation and fitting error of forecasting model, it is more effective to evaluate the performance of forecasting model. Firstly, the forecasting model’s performances rank in line with ACD. Then ACD is firstly proposed to choose individual models for combination and determine combination weight in this paper. Forecast results show that combination models usually have more accurate forecasting performance than individual models. The new method based on ACD shows its superiority in determining combination weights, compared with some other combination weight assignment methods such as: entropy weight method, reciprocal of mean absolute percentage error weight method, and optimal method of absolute percentage error minimization. By using combination forecasting model based on ACD, China’s energy consumption will be up to 5.7988 billion tons of standard coal in 2018.
机译:准确预测能源消耗对一个国家合理的能源计划制定至关重要。这项研究运用了个体模型(BP,GM(1,1),三重指数平滑模型和多项式趋势外推模型)和组合预测模型来预测中国的能源消耗。由于区域相关度(ACD)可以综合评估预测模型的相关性和拟合误差,因此评估预测模型的性能更为有效。首先,预测模型的表现与ACD一致。然后,本文首先提出了ACD来选择单个模型进行组合并确定组合权重。预测结果表明,组合模型通常比单个模型具有更准确的预测性能。与其他一些组合权重分配方法相比,基于ACD的新方法显示出其在确定组合权重方面的优势,例如熵权重法,平均绝对百分比误差权重的倒数法和绝对百分比误差最小化的最佳方法。通过使用基于ACD的组合预测模型,2018年中国的能源消耗将达到579.88亿吨标准煤。

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