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利用谷歌街景进行建筑环境的系统观测:影像日期的时空不稳定性分析。

Using Google Street View for systematic observation of the built environment: analysis of spatio-temporal instability of imagery dates.

机构信息

GIS Health & Hazards Lab, Department of Geography, Kent State University, Kent, OH 44242, USA.

出版信息

Int J Health Geogr. 2013 Dec 3;12:53. doi: 10.1186/1476-072X-12-53.

Abstract

BACKGROUND

Recently, Google Street View (GSV) has been examined as a tool for remotely conducting systematic observation of the built environment. Studies have found it offers benefits over in-person audits, including efficiency, safety, cost, and the potential to expand built environment research to larger areas and more places globally. However, one limitation has been the lack of documentation on the date of imagery collection. In 2011, Google began placing a date stamp on images which now enables investigation of this concern. This study questions the spatio-temporal stability in the GSV date stamp. Specifically, is the imagery collected contemporaneously? If not, how frequently and where is imagery from different time periods woven together to represent environmental conditions in a particular place. Furthermore, how much continuity exists in imagery for a particular time period? Answering these questions will provide guidance on the use of GSV as a tool for built environment audits.

METHODS

GSV was used to virtually "drive" five sites that are a part of the authors' ongoing studies. Each street in the sites was "driven" one mouse-click at a time while observing the date stamp on each image. Every time the date stamp changed, this "disruption" was marked on the map. Every street segment in the site was coded by the date the imagery for that segment was collected. Spatial query and descriptive statistics were applied to understand the spatio-temporal patterns of imagery dates.

RESULTS

Spatio-temporal instability is present in the dates of GSV imagery. Of the 353 disruptions, 82.4% occur close to (<25 m) intersections. The remainder occurs inconsistently in other locations. The extent of continuity for a set of images collected with the same date stamp ranged from 3.13 m to 3373.06 m, though the majority of continuous segments were less than 400 m.

CONCLUSION

GSV offers some benefits over traditional built environment audits. However, this investigation empirically identifies a previously undocumented limitation in its application for research. Imagery dates can change often and without warning. Caution should be used at intersections where these disruptions are most likely to occur, though caution should be used everywhere when using GSV as a data collection tool.

摘要

背景

最近,谷歌街景(GSV)已被视为一种远程进行建筑环境系统观测的工具。研究发现,它比人工审计具有优势,包括效率、安全性、成本以及将建筑环境研究扩展到更大范围和更多地点的潜力。然而,其一个局限性在于缺乏有关图像采集日期的文档。自 2011 年以来,谷歌开始在图像上加盖日期戳,现在可以调查这一问题。本研究质疑 GSV 日期戳的时空稳定性。具体来说,所采集的图像是否是同期的?如果不是,不同时间段的图像在何处以及多频繁地交织在一起,以代表特定地点的环境条件。此外,在特定时间段内,图像的连续性如何?回答这些问题将为使用 GSV 作为建筑环境审计工具提供指导。

方法

使用 GSV 虚拟“驾驶”作者正在进行的研究的五个地点的街道。每次单击一次鼠标,即可“驾驶”每个地点的每条街道,同时观察每张图像上的日期戳。每次日期戳发生变化,都会在地图上标记此“中断”。对站点中的每个街道段进行编码,方法是为该段的图像采集日期进行编码。应用空间查询和描述性统计来了解图像日期的时空模式。

结果

GSV 图像的日期存在时空不稳定性。在 353 次中断中,82.4%发生在(<25 米)交叉口附近。其余中断发生在其他位置不一致。同一日期戳采集的一组图像的连续性范围从 3.13 米到 3373.06 米,尽管大多数连续段小于 400 米。

结论

GSV 为传统的建筑环境审计提供了一些优势。然而,本研究从经验上确定了其在研究应用中的一个以前未记录的局限性。图像日期可能经常且无预警地发生变化。在最有可能发生这些中断的交叉口应谨慎使用,不过在使用 GSV 作为数据收集工具时,在任何地方都应谨慎使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9179/3923560/8ab5830d5a41/1476-072X-12-53-1.jpg

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