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Massively parallel algorithms for real-time wavefront control of a dense adaptive optics system

机译:致密自适应光学系统实时波前控制的大规模平行算法

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Massively parallel algorithms and architectures for real-time wavefront control of a dense adaptive optic system (SELENE) are presented. We have already shown that the computation of a near optimal control algorithm for SELENE can be reduced to the solution of a discrete Poisson equation on a regular domain. Although this represents an optimal computation, due to the large size of the system and the high sampling rate requirement, the implementation of this control algorithm poses a computationally challenging problem since it demands a sustained computational throughput of the order of 10 GFlops. We develop a novel algorithm, designated as Fast Invariant Imbedding algorithm, which offers a massive degree of parallelism with simple communication and synchronization requirements. We also discuss two massively parallel, algorithmically specialized, architectures for low-cost and optimal implementation of the Fast Invariant Imbedding algorithm.
机译:提出了一种大规模平行的算法和用于实时波前控制密集自适应光学系统(Selene)的架构。我们已经表明,可以将近距离控制算法的计算变为常规域上的离散泊松方程的解决方案。尽管这代表了最佳计算,但由于系统的大尺寸和高采样率要求,因此该控制算法的实现构成了计算上具有挑战性的问题,因为它需要10 GFLOPS的持续计算吞吐量。我们开发一种新颖的算法,指定为快速不变嵌入算法,其具有大量的并行度,具有简单的通信和同步要求。我们还讨论了两种大规模并行,算法专用,架构,用于快速不变嵌入算法的低成本和最佳实现。

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