Modelling eye-level visibility of urban green space: Optimising city-wide point-based viewshed computations through prototyping

Sebastian T. Brinkmann, Dominik Kremer, B. B. Walker
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引用次数: 2

Abstract

Abstract. Studies from public and environmental health show strong indication of the importance of visible urban green space. However, current approaches for modelling viewshed based greenness visibility still have high computation costs. As a consequence, comparative studies of city-wide visible greenness, everyday mobility, and individual attention are still at the edge of feasibility. Known optimisations focus on reducing the computation time of single viewsheds. As point-based viewsheds are computed using geospatial data, current approaches seek to accelerate calculation using intelligent data structures or spatial indexes (at the cost of additional memory) or develop approximative heuristic solutions. In contrast, as we aim to process large numbers of viewsheds with fixed parameterisations, we use a prototyping approach preprocessing a single viewshed template to store common prefixes of consecutive lines of sight that can be applied to followup viewsheds by a simple offset operation. Our evaluation shows an average improvement of 34% over the benchmark algorithm (RFVS), with even stronger improvements for large viewsheds. We anticipate that these findings lay the groundwork for further optimisation of point-based viewshed computation, improving the feasibility of subsequent comparative studies in the field of public and environmental health.
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模拟城市绿地的眼平能见度:通过原型优化城市范围内基于点的视点计算
摘要来自公共卫生和环境卫生的研究有力地表明了可见城市绿色空间的重要性。然而,目前基于视图的绿色可见度建模方法仍然具有较高的计算成本。因此,对城市可见绿化、日常交通和个人注意力的比较研究仍然处于可行性的边缘。已知的优化集中在减少单个视图的计算时间。由于基于点的视图是使用地理空间数据计算的,当前的方法寻求使用智能数据结构或空间索引(以额外的内存为代价)来加速计算,或者开发近似的启发式解决方案。相比之下,由于我们的目标是处理具有固定参数化的大量视图,我们使用原型方法预处理单个视图模板来存储连续视线的公共前缀,这些前缀可以通过简单的偏移操作应用于后续视图。我们的评估显示,与基准算法(RFVS)相比,平均改进了34%,对于大视角的改进甚至更大。我们期望这些发现为进一步优化基于点的视角计算奠定基础,提高公共和环境卫生领域后续比较研究的可行性。
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