An Unmanned Airship Thermal Infrared Remote Sensing System for Low-Altitude and High Spatial Resolution Monitoring of Urban Thermal Environments: Integration and an Experiment
Satellite remote sensing data that lacks spatial resolution and timeliness is of limited ability to access urban thermal environment on a micro scale. This paper presents an unmanned airship low-altitude thermal infrared remote sensing system (UALTIRSS), which is composed of an unmanned airship, an...
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doaj-8e367c0b66a8484b91a608ccee4068972020-11-24T22:08:57ZengMDPI AGRemote Sensing2072-42922015-10-01710142591427510.3390/rs71014259rs71014259An Unmanned Airship Thermal Infrared Remote Sensing System for Low-Altitude and High Spatial Resolution Monitoring of Urban Thermal Environments: Integration and an ExperimentPeng Ren0Qinglin Meng1Yufeng Zhang2Lihua Zhao3Xu Yuan4Xiaoheng Feng5State Key Laboratory of Subtropical Building Science, Department of Architecture, South China University of Technology, Guangzhou 510640, ChinaState Key Laboratory of Subtropical Building Science, Department of Architecture, South China University of Technology, Guangzhou 510640, ChinaState Key Laboratory of Subtropical Building Science, Department of Architecture, South China University of Technology, Guangzhou 510640, ChinaState Key Laboratory of Subtropical Building Science, Department of Architecture, South China University of Technology, Guangzhou 510640, ChinaState Key Laboratory of Subtropical Building Science, Department of Architecture, South China University of Technology, Guangzhou 510640, ChinaState Key Laboratory of Subtropical Building Science, Department of Architecture, South China University of Technology, Guangzhou 510640, ChinaSatellite remote sensing data that lacks spatial resolution and timeliness is of limited ability to access urban thermal environment on a micro scale. This paper presents an unmanned airship low-altitude thermal infrared remote sensing system (UALTIRSS), which is composed of an unmanned airship, an onboard control and navigation subsystem, a task subsystem, a communication subsystem, and a ground-base station. Furthermore, an experimental method and an airborne-field experiment for collecting land surface temperature (LST) were designed and conducted. The LST pattern within 0.8-m spatial resolution and with root mean square error (RMSE) value of 2.63 °C was achieved and analyzed in the study region. Finally, the effects of surface types on the surrounding thermal environment were analyzed by LST profiles. Results show that the high thermal resolution imagery obtained from UALTIRSS can provide more detailed thermal information, which are conducive to classify fine urban material and assess surface urban heat island (SUHI). There is a significant positive correlation between the average LST of profiles and the percent impervious surface area (ISA%) with R2 around 0.917. Overall, UALTIRSS and the retrieval method were proved to be low-cost and feasible for studying micro urban thermal environments.http://www.mdpi.com/2072-4292/7/10/14259low-altitudethermal infrared remote sensing systemhigh spatial resolutionland surface temperature (LST)urban thermal environment |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Peng Ren Qinglin Meng Yufeng Zhang Lihua Zhao Xu Yuan Xiaoheng Feng |
spellingShingle |
Peng Ren Qinglin Meng Yufeng Zhang Lihua Zhao Xu Yuan Xiaoheng Feng An Unmanned Airship Thermal Infrared Remote Sensing System for Low-Altitude and High Spatial Resolution Monitoring of Urban Thermal Environments: Integration and an Experiment Remote Sensing low-altitude thermal infrared remote sensing system high spatial resolution land surface temperature (LST) urban thermal environment |
author_facet |
Peng Ren Qinglin Meng Yufeng Zhang Lihua Zhao Xu Yuan Xiaoheng Feng |
author_sort |
Peng Ren |
title |
An Unmanned Airship Thermal Infrared Remote Sensing System for Low-Altitude and High Spatial Resolution Monitoring of Urban Thermal Environments: Integration and an Experiment |
title_short |
An Unmanned Airship Thermal Infrared Remote Sensing System for Low-Altitude and High Spatial Resolution Monitoring of Urban Thermal Environments: Integration and an Experiment |
title_full |
An Unmanned Airship Thermal Infrared Remote Sensing System for Low-Altitude and High Spatial Resolution Monitoring of Urban Thermal Environments: Integration and an Experiment |
title_fullStr |
An Unmanned Airship Thermal Infrared Remote Sensing System for Low-Altitude and High Spatial Resolution Monitoring of Urban Thermal Environments: Integration and an Experiment |
title_full_unstemmed |
An Unmanned Airship Thermal Infrared Remote Sensing System for Low-Altitude and High Spatial Resolution Monitoring of Urban Thermal Environments: Integration and an Experiment |
title_sort |
unmanned airship thermal infrared remote sensing system for low-altitude and high spatial resolution monitoring of urban thermal environments: integration and an experiment |
publisher |
MDPI AG |
series |
Remote Sensing |
issn |
2072-4292 |
publishDate |
2015-10-01 |
description |
Satellite remote sensing data that lacks spatial resolution and timeliness is of limited ability to access urban thermal environment on a micro scale. This paper presents an unmanned airship low-altitude thermal infrared remote sensing system (UALTIRSS), which is composed of an unmanned airship, an onboard control and navigation subsystem, a task subsystem, a communication subsystem, and a ground-base station. Furthermore, an experimental method and an airborne-field experiment for collecting land surface temperature (LST) were designed and conducted. The LST pattern within 0.8-m spatial resolution and with root mean square error (RMSE) value of 2.63 °C was achieved and analyzed in the study region. Finally, the effects of surface types on the surrounding thermal environment were analyzed by LST profiles. Results show that the high thermal resolution imagery obtained from UALTIRSS can provide more detailed thermal information, which are conducive to classify fine urban material and assess surface urban heat island (SUHI). There is a significant positive correlation between the average LST of profiles and the percent impervious surface area (ISA%) with R2 around 0.917. Overall, UALTIRSS and the retrieval method were proved to be low-cost and feasible for studying micro urban thermal environments. |
topic |
low-altitude thermal infrared remote sensing system high spatial resolution land surface temperature (LST) urban thermal environment |
url |
http://www.mdpi.com/2072-4292/7/10/14259 |
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