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sDNA: 3-d spatial network analysis for GIS, CAD, Command Line & Python

机译:SDNA:GIS,CAD,命令行和Python的3-D空间网络分析

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Spatial Design Network Analysis (sDNA) is a toolbox for 3-d spatial network analysis, especially street/path/urban network analysis, motivated by a need to use network links as the principal unit of analysis in order to analyse existing network data. sDNA is usable from QGIS & ArcGIS geographic information systems, AutoCAD, the command line, and via its own Python API. It computes measures of accessibility (reach, mean distance/closeness centrality, gravity), flows (bidirectional betweenness centrality) and efficiency (circuity) as well as convex hull properties, localised within lower- and upper-bounded radial bands. Weighting is flexible and can make use of geometric properties, data attached to links, zones, matrices or combinations of the above. Motivated by a desire to base network analysis on route choice and spatial cognition, the definition of distance can be network-Euclidean, angular, a mixture of both, custom, or specific to cyclists (avoiding slope and motorised traffic). In addition to statistics on network links, the following outputs can be computed: geodesics, network buffers, accessibility maps, convex hulls, flow bundles and skim matrices. Further tools assist with network preparation and calibration of network models to observed data.To date, sDNA has been used mainly for urban network analysis both by academics and city planners/engineers, for tasks including prediction of pedestrian, cyclist, vehicle and metro flows and mode choice; also quantification of the built environment for epidemiology and urban planning & design.
机译:空间设计网络分析(SDNA)是一个用于3-D空间网络分析的工具箱,尤其是街道/路径/城市网络分析,所以通过使用网络链接作为主要分析单位,以便分析现有网络数据。 SDNA可用于QGIS和ArcGIS地理信息系统,AutoCAD,命令行,并通过其自己的Python API。它计算可访问性的测量(达到,平均距离/接近中心,重力),流量(双向之间的中心)和效率(循环)以及凸船舶特性,局部地在下限型径向频带内局部化。加权是灵活的,可以利用几何属性,数据附加到链接,区域,矩阵或上面的组合。由于渴望基于路线选择和空间认知的网络分析,距离的定义可以是网络 - 欧几里德,角度,骑自行车者(避免坡度和机动流量)的近似,定制或特定的混合物。除了有关网络链路的统计数据外,还可以计算以下输出:Geodesics,网络缓冲区,可访问性图,凸壳,流捆绑和浏览矩阵。进一步的工具有助于网络模型的网络准备和校准观察数据。迄今为止,SDNA主要用于学术界和城市规划师/工程师的城市网络分析,包括预测行人,骑自行车者,车辆和地铁流程的任务模式选择;还为流行病学和城市规划设计量化了建造环境。

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