The Laue diffraction microscopy experiment uses the polychromatic Laue micro-diffraction technique to examine the structure of materials with sub-micron spatial resolution in all three dimensions. During this experiment, local crystallographic orientations, orientation gradients and strains are measured as properties which will be recorded in HDF5 image format. The recorded images will be processed with a depth reconstruction algorithm for future data analysis. But the current depth reconstruction algorithm consumes considerable processing time and might take up to 2 weeks for reconstructing data collected from one single experiment. To improve the depth reconstruction computation speed, we propose a scalable GPU program solution on the depth reconstruction problem in this paper. The test result shows that the running time would be 10 to 20 times faster than the prior CPU design for various size of input data.
翻译:Laue Difrection显微分析实验使用多色分解 Laue 微分解技术来检查具有亚微微空间分辨率的材料结构的所有三个维度。 在这次实验中, 本地晶体定向、 定向梯度和线菌将测量为以 HDF5 图像格式记录的属性。 记录下来的图像将用深度重建算法处理, 用于未来的数据分析 。 但是目前的深度重建算法需要相当长的处理时间, 重建从一个实验中收集的数据可能需要长达两周的时间。 为了提高深度重建计算速度, 我们在此文件中提出了一个可缩放的 GPU 程序解决方案 。 测试结果表明, 运行时间将比先前的 CPU 设计速度快10到 20 倍, 用于各种输入量的数据 。