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World energy consumption pattern as revealed by DMSP-OLS nighttime light imagery

机译:DMSP-OLS夜间光影像揭示的世界能源消耗格局

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摘要

Remotely sensed nighttime light (NTL) from the Defense Meteorological Satellite Program (DMSP) Operational Linescan System (OLS) provides a spatially consistent and cost-effective mean to estimate energy consumption pattern. While previous researches have documented the application of NTL to predict electric power consumption (EPC) with varying degrees of success, few have systematically studied the possible factors affecting the EPC-NTL relationship. Moreover, no substantial research effort has been made to relate overall energy consumption (OEC) to NTL. This study investigated key factors governing the EPC/OEC-NTL relationship by examining the influences of affluence, urbanization, technology, temperature, and NTL pattern. Results show that EPC increased with higher per capital GDP, urbanization rate, and high-technology exports, and lower agricultural development, both globally and regionally. Meanwhile, EPC generally reduced with higher temperature and more agglomerate human activities. A strong OEC-NTL relationship was found; but the influencing factors to the OEC-NTL relationship varied across regions due to the natures of energy use. These factors must be considered especially for the studies of less-affluent regions where NTL was undetectable by the DMSP-OLS sensor.
机译:国防气象卫星计划(DMSP)作战线扫描系统(OLS)的遥感夜间照明(NTL)提供了空间上一致且具有成本效益的方式来估算能耗模式。尽管先前的研究已经记录了NTL在不同程度成功的情况下预测电耗(EPC)的应用,但很少系统地研究影响EPC-NTL关系的可能因素。此外,还没有进行大量的研究工作来将总能耗(OEC)与NTL相关联。本研究通过考察富裕程度,城市化程度,技术,温度和NTL模式的影响,研究了控制EPC / OEC-NTL关系的关键因素。结果表明,EPC在全球和区域内随着人均GDP,城市化率和高科技出口的增加以及农业发展的降低而增加。同时,随着温度的升高和人类活动的加剧,EPC通常会降低。发现了强烈的OEC-NTL关系;但由于能源使用的性质,影响OEC-NTL关系的因素在不同地区之间有所不同。在研究DMSP-OLS传感器无法检测到NTL的较富裕区域时,必须特别考虑这些因素。

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