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首页> 外文期刊>International Journal of Geographical Information Science >A data relocation approach for terrain surface analysis on multi-GPU systems: a case study on the total viewshed problem
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A data relocation approach for terrain surface analysis on multi-GPU systems: a case study on the total viewshed problem

机译:多GPU系统地形表面分析的数据重定位方法 - 以总观音阶段为例

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摘要

Digital Elevation Models (DEMs) are important datasets for modelling the line of sight, such as radio signals, sound waves and human vision. These are commonly analyzed using rotational sweep algorithms. However, such algorithms require large numbers of memory accesses to 2D arrays which, despite being regular, result in poor data locality in memory. Here, we propose a new methodology called skewed Digital Elevation Model (sDEM), which substantially improves the locality of memory accesses and increases the inherent parallelism involved in the computation of rotational sweep-based algorithms. In particular, sDEM applies a data restructuring technique before accessing the memory and performing the computation. To demonstrate the high efficiency of sDEM, we use the problem of total viewshed computation as a case study considering different implementations for single-core, multi-core, single-GPU and multi-GPU platforms. We conducted two experiments to compare sDEM with (i) the most commonly used geographic information systems (GIS) software and (ii) the state-of-the-art algorithm. In the first experiment, sDEM is on average 8.8x faster than current GIS software despite being able to consider only few points because of their limitations. In the second experiment, sDEM is 827.3x faster than the state-of-the-art algorithm in the best case.
机译:数字高度模型(DEMS)是用于建模视线的重要数据集,例如无线电信号,声波和人类视觉。这些通常使用旋转扫描算法分析。然而,这种算法需要大量的存储器访问到2D阵列,尽管是常规的,但是导致存储器中的数据位置差。在这里,我们提出了一种称为偏斜数字高度模型(SDEM)的新方法,其大大提高了存储器访问的局部性,并增加了基于旋转扫描的算法计算中所涉及的固有并行性。特别地,SDEM在访问存储器之前应用数据重组技术并执行计算。为了展示SDEM的高效率,我们使用总探测计算问题作为考虑单核,多核,单GPU和多GPU平台的不同实现的案例研究。我们进行了两项实验,可以将SDEM与(i)最常用的地理信息系统(GIS)软件和(ii)进行了比较的最先进的算法。在第一个实验中,尽管能够考虑只有少数点,但SDEM平均速度比当前GIS软件速度快。在第二种实验中,SDEM在最佳案例中比最先进的算法快827.3倍。

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