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Studying Surface and Canopy Layer Urban Heat Island at Micro-Scale Using Multi-Sensor Data in Geographic Information Systems

机译:地理信息系统中使用多传感器数据在微观尺度上研究城市地表冠层

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Variations of Urban Heat Island (UHI) effect within urban areas cannot be studied in detail using traditional combination of satellite images with thermal infrared (IR) bands and local weather station data due to their limited spatio-temporal scale. In this article, a system has been built to supplement the current infrastructure and enhance the high spatio-temporal scale. The article progresses from initially traversing through the city of Greater Noida to continuous manual data collection on an academic campus and later by automating it with integrated sensors on a microcontroller while achieving the objective of the collection of continuous high spatio-temporal scale data. Geographic information systems (GISs) were used to integrate and visualize these data with land surface temperature (LST) and air temperature data. The system provided the diurnal cycle of urban materials and insights into nighttime UHI at micro-scale. Overall the low-cost sensing technology presented has the potential to monitor citywide UHI.
机译:由于具有有限的时空尺度,因此无法使用具有热红外(IR)波段的卫星图像和本地气象站数据的传统组合来详细研究市区内城市热岛(UHI)效应的变化。本文中,已建立了一个系统来补充当前的基础结构并增强高时空规模。本文从最初遍历大诺伊达市到在学术园区中进行连续的手动数据收集,后来通过在微控制器上使用集成传感器实现自动化来实现,同时实现了收集连续的高时空规模数据的目标。地理信息系统(GISs)用于将这些数据与地表温度(LST)和空气温度数据集成和可视化。该系统提供了城市物资的昼夜周期,并提供了微观上夜间UHI的见解。总体而言,提出的低成本传感技术具有监测全市UHI的潜力。

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