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Parallel programming characteristics of a DSP-based parallel system

机译:基于DSP的并行系统的并行编程特性

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This paper firstly introduces the structure and working principle of DSP-based parallel system, parallel accelerating board and SHARC DSP chip. Then it pays attention to investigating the system's programming characteristics, especially the mode of communication, discussing how to design parallel algorithms and presenting a domain-decomposition-based complete multi-grid parallel algorithm with virtual boundary forecast (VBF) to solve a lot of large-scale and complicated heat problems. In the end, Mandelbrot Set and a non-linear heat transfer equation of ceramic/metal composite material are taken as examples to illustrate the implementation of the proposed algorithm. The results showed that the solutions are highly efficient and have linear speedup.
机译:本文首先介绍了基于DSP的并行系统,并行加速板和SHARC DSP芯片的结构和工作原理。然后重点研究系统的编程特性,特别是通信方式,讨论如何设计并行算法,并提出带有虚拟边界预测(VBF)的基于域分解的完整多网格并行算法,以解决许多大型问题。规模和复杂的热问题。最后以Mandelbrot集和陶瓷/金属复合材料的非线性传热方程为例,说明了该算法的实现。结果表明,该解决方案高效且线性加速。

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