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COMPASS: An Efficient GPU-based Simulation Software for Adaptive Optics Systems

机译:COMPASS:适用于自适应光学系统的基于GPU的高效仿真软件

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For ground-based astronomical telescopes, Image resolution is directly dependent on aperture diameter. Practically however, atmospheric turbulence disturbs incoming wavefronts and sets dramatic limitations on imaging quality, which issue led to using Adaptive Optics (AO) systems to compensate wavefront disturbance and achieve optimal resolution. With the arrival of Extremely Large Telescopes, with aperture diameter above 20 meters, High Performance Computing (HPC) techniques are required to simulate and operate AO systems. With the advent of General Purpose Graphics Processing Units (GPGPU), many-core architectures of GPUs can be leveraged to accelerate AO simulation software. COMPASS (COMputing Platform for Adaptive opticS System) is an end-to-end AO simulation soft¬ware based upon Nvidia's Compute Unified Device Architecture (CUDA) toolkit. Simulations performed on state-of-the-art Nvidia DGX-1 servers equipped with 8 Tesla V100-SXM2 and Dual 20- core Intel Xeon E5-2698 v4 show a speed up factor of up to 362 as compared to YAO, a feature-equivalent software with multi¬threaded CPU architecture. The COMPASS implementation ensures compatibility with any Nvidia architecture. A speed up by 5 was measured between a DGX-1 and a comparable server with 6-year old GPUs, with no line of code changed.
机译:对于地面天文望远镜,图像分辨率直接取决于孔径。然而,实际上,大气湍流会干扰入射的波前,并在成像质量上设置了巨大的局限性,从而导致使用自适应光学(AO)系统补偿波前干扰并获得最佳分辨率。随着孔径大于20米的超大型望远镜的到来,需要高性能计算(HPC)技术来模拟和操作AO系统。随着通用图形处理单元(GPGPU)的出现,可以利用GPU的许多核心架构来加速AO仿真软件。 COMPASS(自适应光学系统的计算平台)是一种基于Nvidia的Compute Unified Device Architecture(CUDA)工具包的端到端AO仿真软件。在配备8台Tesla V100-SXM2和双20核Intel Xeon E5-2698 v4的最新Nvidia DGX-1服务器上进行的仿真显示,与YAO相比,其加速因子高达362。具有多线程CPU架构的等效软件。 COMPASS实现可确保与任何Nvidia架构兼容。在DGX-1和具有6年历史的GPU的同类服务器之间,测得的速度提高了5倍,而无需更改代码行。

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