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首页> 外文期刊>E3S Web of Conferences >Analysis of Causality Relationship Energy Consumption and CO 2 Emissions to Economic Growth based on the LEAP Model Case Study of Energy Consumption in Indonesia 2010-2025)
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Analysis of Causality Relationship Energy Consumption and CO 2 Emissions to Economic Growth based on the LEAP Model Case Study of Energy Consumption in Indonesia 2010-2025)

机译:基于LEAP模型的能源消费与CO 2 与经济增长的因果关系分析案例研究,印尼,2010-2025

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This study discusses scenarios and analyzes the causal relationship of energy consumption and CO_(2)emissions to economic growth in Indonesia period 2010-2025. The modeling scenario is divided into 6 sections, namely BAU scenario, High scenario, Low scenario, High-Low scenario, Low-High scenario and Policy scenario. The result of scenario data is processed by performing statistical data modeling and econometric period 2010-2025. The research method used interpolation method and causality testing method. The tools are used in this research is LEAP and EViews. LEAP is used for energy modeling as well as CO_(2)emissions and EViews is used to manage data, analyze econometrics and statistics. The results of this study show that economic growth, energy consumption and CO_(2)emissions at 6 scenario indicate fluctuated competitive growth. This study proves that only 1 scenario has direct causality relationship that is only energy consumption which statistically significant influence economic growth in Policy scenario. For economic growth and CO_(2)emissions there are 4 scenarios that have direct causality (BAU, High, High -Low, Low-High scenario), 1 scenario has no causality relationship (Low scenario) and 1 scenario has two -way causality relationship (Policy scenario).
机译:本研究讨论了情景,并分析了2010-2025年印度尼西亚能源消耗和CO_(2)排放与经济增长的因果关系。建模方案分为6个部分,即BAU方案,高方案,低方案,高-低方案,低-高方案和策略方案。方案数据的结果通过执行统计数据建模和计量期2010-2025进行处理。研究方法采用插值法和因果检验法。本研究中使用的工具是LEAP和EViews。 LEAP用于能源建模以及CO_(2)排放,而EViews用于管理数据,分析计量经济学和统计数据。这项研究的结果表明,在6种情况下,经济增长,能源消耗和CO_(2)排放表明竞争性增长存在波动。这项研究证明,只有一种情景具有直接因果关系,而这种因果关系只是能源消耗,在统计上影响政策情景中的经济增长。对于经济增长和CO_(2)排放,有4个具有直接因果关系的情景(BAU,高,高-低,低-高情景),1个情景没有因果关系(低情景),而1个情景具有双向因果关系关系(政策场景)。

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