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GSIS虚拟专辑|众源城市地理信息、无人机、摄影测量与遥感

编辑部 地球空间信息科学学报GSIS 2022-07-17



为方便广大读者按照自己的研究方向来选择阅读论文,《地球空间信息科学学报》(Geo-Spatial Information Science,GSIS)按照专业分类整理了2018-2020年发表的所有论文,欢迎各位读者阅读、下载、分享。


全部虚拟专辑总目录下载地址为:

链接: https://pan.baidu.com/s/1gZ8qWZG4mAxu0x4tQtG9AQ

提取码: np4m 





Crowdsourcing for Urban Geoinformatics



Exploring point zero: a study of 20 Chinese cities

Qi Zhou, Mingjian Zhai and Wenhao Yu. 2020

Geo-spatial Information Science 23 (3): 258-272.

https://doi.org/10.1080/10095020.2020.1779011


Measuring accessibility of bus system based on multi-source traffic data

YufanZuo, Zhiyuan Liu and Xiao Fu . 2020

Geo-spatial Information Science 23(3): 248-257.

https://doi.org/10.1080/10095020.2020.1783189


Assessing the visualization of space and traffic volume using GIS-based processing and visibility parameters of space syntax

Fazzami Othman, Zaharah M. Yusoffand Siti Aekbal Salleh. 2020

Geo-spatial Information Science 23 (3): 209-221.

https://doi.org/10.1080/10095020.2020.1811781


Determining the road traffic accident hotspots using GIS-based temporal-spatial statistical analytic techniques in Hanoi, Vietnam

KhanhGiang Le, Pei Liu and Liang-Tay Lin. 2020

Geo-spatial Information Science 23 (1): 52-60.

https://doi.org/10.1080/10095020.2020.1718000


Extracting commuter-specific destination hotspots from trip destination data – comparing the boro taxi service with Citi Bike in NYC

Andreas Keler, Jukka M. Krisp and Linfang Ding. 2020

Geo-spatial Information Science 23 (2): 141-152.

https://doi.org/10.1080/10095020.2019.1621008


Big spatial data for urban and environmental sustainability

Bo Huang and Jionghua Wang.2020

Geo-spatial Information Science 23 (2): 125-140.

https://doi.org/10.1080/10095020.2020.1754138


A high-precision heuristic model to detect home and work locations from smart card data

Nilufer Sari Aslam, Tao Cheng and James Cheshire. 2019

Geo-spatial Information Science 22 (1): 1−11.

https://doi.org/10.1080/10095020.2018.1545884


Do people communicate about their whereabouts? Investigating the relation between user-generated text messages and Foursquare check-in places

Ming Li, Rene Westerholtand and Alexander Zipf. 2018

Geo-spatial Information Science 21 (3):159−172. https://doi.org/10.1080/10095020.2018.1498669.


Description and characterization of place properties using topic modeling on georeferenced tags

Ming Li, Rene Westerholtand and Alexander Zipf. 2018

Geo-spatial Information Science 21 (3): 173−184.

https://doi.org/10.1080/10095020.2018.1493238


Road distance and travel time for an improved house price Kriging predictor

Henry Crosby, Theo Damoulas, Alex Caton, Paul Davis, João Porto de Albuquerque and Stephen A. Jarvis. 2018

Geo-spatial Information Science 21 (3): 185−194. https://doi.org/10.1080/10095020.2018.1503775


Analyzing the effect of earthquakes on OpenStreetMap contribution patterns and tweeting activities

Ahmed Ahmouda, H. H. Hochmairand Sreten Cvetojevic. 2018

Geo-spatial Information Science 21 (3):195−212. https://doi.org/10.1080/10095020.2018.1498666.


Data trustworthiness and user reputation as indicators of VGI quality.

Paolo Fogliaroni, FaustoD’Antonio and EliseoClementini. 2018

Geo-spatial Information Science 21 (3): 213 −233.

https://doi.org/10.1080/10095020.2018.1496556.


OpenStreetMap data quality enrichment through awareness raising and collective action tools—experiences from a European project

Amin Mobasheri, Alexander Zipf and  Louise Francis. 2018

Geo-spatial Information Science 21 (3):234−246. https://doi.org/10.1080/10095020.2018.1493817


Routing through open spaces – A performance comparison of algorithms

Stefan Hahmann, JakobMiksch, Bernd Resch, Johannes Lauer and Alexander Zipf. 2018

Geo-spatial Information Science 21(3): 247 −256.

https://doi.org/10.1080/10095020.2017.1399675.



UAV (Unmanned Aerial Vehicle)



Accuracy assessment of real-time kinematics (RTK) measurements on unmanned aerial vehicles (UAV) for direct geo-referencing

Desta Ekaso, Francesco Nexand Norman Kerle. 2020

Geo-spatial Information Science 23 (2): 165-181.

https://doi.org/10.1080/10095020.2019.1710437


Estimation of crowd density from UAVs images based on corner detection procedures and clustering analysis

Ali Almagbile. 2019

Geo-spatial Information Science 22 (1): 23−24.

https://doi.org/10.1080/10095020.2018.1539553


Unmanned aerial vehicle positioning based on multi-sensor information fusion

Wenjun Li and Zhaoyu Fu. 2018

Geo-spatial 

Information Science 21 (4): 302−310.

https://doi.org/10.1080/10095020.2018.1465209


UAV navigation system using line-based sensor pose estimation

Julien Li-Chee-Ming and Costas Armenakis. 2018

Geo-spatial Information Science 21(1):2−11.

https://doi.org/10.1080/10095020.2017.1420506.


Unmanned aerial vehicles (UAV) for assessment of qualitative classification of Norway spruce in temperate forest stands

Olga Brovkina, Emil Cienciala, Peter Surovýand Přemysl Janata. 2018

Geo-spatial Information Science 21(1):12−20.

https://doi.org/10.1080/10095020.2017.1416994.


A survey on vision-based UAV navigation

Yuncheng Lu, ZhucunXue, Gui-Song Xia and Liangpei Zhang. 2018

Geo-spatial  Information Science 21(1):21−32.

https://doi.org/10.1080/10095020.2017.1420509.


Analysis of large-scale UAV images using a multi-scale hierarchical representation

Yuncheng Lu, ZhucunXue, Gui-Song Xia and Liangpei Zhang. 2018

Geo-spatial Information Science 21(1): 33−44.

https://doi.org/10.1080/10095020.2017.1418263.


Log-cumulants of the finite mixture model and their application to statistical analysis of fully polarimetric UAVSAR data.

Xinping Deng, Jinsong Chen, Hongzhong Li, Pengpeng Han and Wen Yang. 2018

Geo-spatial  Information Science  21(1):45−55.

https://doi.org/10.1080/10095020.2017.1419607.


Super-resolution enhancement of UAV images based on fractional calculus and POCS

Junfeng Lei, Shangyue Zhang, Li Luo, Jinsheng Xiao and He Wang. 2018

Geo-spatial  Information Science  21(1):56−66.

https://doi.org/10.1080/10095020.2018.1424409.


Low-altitude geophysical magnetic prospecting based on multirotor UAV as a promising replacement for traditional ground survey

Alexander V. Parshin, Vladimir A. Morozov, Anton V. Blinov, Alexey N. Kosterevand Alexander E. Budyak.  2018

Geo-spatial  Information Science 21(1):67−74

https://doi.org/10.1080/10095020.2017.1420508.


Photogrammetry and Remote Sensing


Support vector machine regression (SVR)-based nonlinear modeling of radiometric transforming relation for the coarse-resolution data-referenced relative radiometric normalization (RRN)

Jing Geng, Wenxia Gan, Jinying Xu, Ruqin Yang and Shuliang Wang. 2020

Geo-spatial Information Science 23 (3): 237-247.

https://doi.org/10.1080/10095020.2020.1785958



Homogeneous tree height derivation from tree crown delineation using Seeded Region Growing (SRG) segmentation

Muhamad Farid, Ramliand Khairul, Nizam Tahar,. 2020

Geo-spatial Information Science 23 (3): 195-208

https://doi.org/ 10.1080/10095020.2020.1805366


A Principal Component Analysis (PCA)-based framework for automated variable selection in geodemographic classification

Yunzhe Liu, Alex Singleton and Daniel Arribas-Bel. 2019.

Geo-spatial Information Science 22 (4): 51-264.

https://doi.org/10.1080/10095020.2019.1621549


Mapping of bauxite mineral deposits in the northern region of Saudi Arabia by using Advanced Spaceborne Thermal Emission and Reflection Radiometer satellite data

P. Sheik Mujabar and S. Dajkumar. 2019.

Geo-spatial Information Science 22 (1): 35−44.

http://doi.org/10.1080/10095020.2016.1151205.


Object-based classification of hyperspectral data using Random Forest algorithm.

Saeid Amini, Saeid Homayouni, Abdolreza Safari and Ali A. Darvishsefat. 2018.

Geo-spatial Information Science 21(2): 127−138. https://doi.org/10.1080/10095020.2017.1399674.


Geometric-constrained multi-view image matching method based on semi-global optimization.

Wenhao Zhao, Li Yan and Yunsheng Zhang. 2018

Geo-spatial Information Science 21(2): 115−126.

https://doi.org/10.1080/10095020.2018.1441754


关于  Geo-spatial Information Science

Geo-spatial Information Science(GSIS)是由武汉大学主办的测绘遥感专业英文期刊,主编为中国科学院院士、中国工程院院士李德仁教授。2020年9月被SCIE收录。


GSIS 采用开放获取的出版模式,就是大家所说的开源期刊/OA期刊(Open Access),文章一经发表,可马上被全球读者免费全文下载,这种模式可以让你的文章有更多的曝光度。


目前,在GSIS发表文章不需缴纳审稿费、论文处理费等任何费用,完全免费。欢迎广大测绘遥感学科的科研工作者投稿。如果您有需要抢首发权的高质量文章,可与我们联系gsis@whu.edu.cn,主编/国际副主编亲自为您处理,编辑部提供随时随地的疑问解答与状态跟踪。


期刊官网:

https://www.tandfonline.com/tgsi


投稿网址:

https://rp.tandfonline.com/submission/create?journalCode=TGSI



长按二维码  关注GSIS微信号

GSIS-WHU

Geo-Spatial Information Science

SCIE数据库收录期刊

中国最具国际影响力学术期刊

中国科技期刊卓越行动计划入选期刊

https://www.tandfonline.com/tgsi

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