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Quantifying Remoteness for Risk and Resilience Assessment Using Nighttime Satellite Imagery

机译:使用夜间卫星图像量化风险和恢复力评估的远程性

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Abstract Remoteness has a crucial role in risk assessments of megaprojects, resilience assessments of communities and infrastructure, and a wide range of public policymaking. The existing measures of remoteness require an extensive amount of population census and of road and infrastructure network data, and often are limited to narrow scopes. This paper presents a methodology to quantify remoteness using nighttime satellite imagery. The light clusters of nighttime satellite imagery are direct yet unintended consequences of human settled populations and urbanization; therefore, the absence of illuminated clusters is considered as evidence of remoteness. The proposed nighttime remoteness index (NIRI) conceptualizes the remoteness based on the distribution of nighttime lights within radii of up to 1,000 km. A predictive model was created using machine learning techniques such as multivariate adaptive regression splines and support vector machines regressions to establish a reliable and accurate link between nighttime lights and the Accessibility/Remoteness Index of Australia (ARIA). The model was used to establish NIRI for the United States and Canada, and in different years. The index was compared with the Canadian remoteness indexes published by Statistics Canada.
机译:摘要偏远在兆画幕,恢复社区和基础设施的抵御评估以及广泛的公共决策方面具有至关重要的作用。现有的遥控措施需要广泛的人口普查和道路和基础设施网络数据,并且通常仅限于窄范围。本文介绍了使用夜间卫星图像量化远程的方法。夜间卫星图像的光簇是人类定居的人口和城市化的直接尚未意识的后果;因此,没有照明簇被认为是遥感的证据。拟议的夜间遥控指数(NIRI)根据夜间灯的分布概念化,夜间光线在最高1,000公里。使用多变量自适应回归样条等机器学习技术创建预测模型,并支持向量机回归,以建立夜间灯和澳大利亚(ARIA)的可访问性/遥控指数之间的可靠和准确的链接。该模型用于为美国和加拿大建立德尼里,而在不同的年份。将指数与加拿大统计数据发表的加拿大遥控指数进行比较。

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