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Evaluating the Performance and Cost of Accelerating Seismic Processing with CUDA, OpenCL, OpenACC, and OpenMP

机译:评估与CUDA,OpenCL,OpenACC和OpenMP加速地震处理的性能和成本

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The Common Midpoint and Common Reflection Surface methods are computationally demanding seismic processing techniques for improving signal-to-noise ratios. In this paper, we discuss the performance results and the cost-benefit of accelerating these two procedures using CUDA, OpenCL, OpenACC, and OpenMP on CPUs and GPUs. We obtained results on server-class CPUs and state-of-the-art GPUs that show that, while OpenCL and CUDA present the best performance results on GPUs, OpenACC can also be an interesting choice due to its programmability. Among the tested accelerators, GPUs with the Pascal microarchitecture showed the best results for the tested seismic processing methods in terms of raw performance, energy efficiency, and performance per price.
机译:常见的中点和共同反射表面方法是计算要求改善信噪比的地震处理技术。在本文中,我们讨论了使用CUDA,OpenCL,OpenACC和CPU和GPU上的OpenMP加速这两种程序的绩效结果和成本效益。我们在服务器级CPU和最先进的GPU上获得了结果,显示了,而OpenCL和CUDA呈现了GPU上的最佳性能结果,OPEACC也可以成为可编程性的有趣选择。在测试的促进剂中,具有Pascal微体系结构的GPU在原始性能,能源效率和每个价格的性能方面表现出测试的地震加工方法的最佳结果。

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