利用dsp板实现特殊算法的实时计算

S. Aiello, A. Anzalone, M. Bartolucci, G. Cardella, S. Cavallaro, E. Filippo, A. Pietro, S. Feminò, M. Geraci, P. Guazzoni, C. Iacono-Manno, G. Lanzalone, G. Lanzanò, S. Nigro, G. Manfredi, A. Musumarra, A. Pagano, M. Papa, S. Pirrone, Giuseppe Politi, F. Porto, F. Rizzo, S. Sambataro, G. Sechi, M. Sperduto, C. Sutera, L. Zetta
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引用次数: 5

摘要

特殊算法的在线计算,如核物理中粒子识别的幂律算法,是一个需要实时计算资源的基本问题,由于核事件的随机性,这些计算资源必须符合时间约束,并保证正确性。目前的工作集中在使用低成本商用DSP板的可能性上。所使用的DSP板通过编写汇编程序,实时计算以切比切夫多项式级数展开的超越函数,以实现核反应中带电粒子的识别。特别是一个仿真框架的介绍,其中汇编DSP算法在全速测试,而输入和输出在低速测试,通过使用两台主机PC,模拟外设的I/O数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time computing of special algorithms with a DSP-based board
The on-line computation of special algorithms, as power-law for particle identification in nuclear physics, is a basic problem requiring real-time computational resources that have to fit time constraints, due to the randomness of nuclear events, and assure correctness. Present work concentrates on the possibility to use a low cost commercially available DSP boards for this purpose. The used DSP board computes in real-time transcendental functions expanded in Chebychev polynomial series with assembler routines ad hoc written, in order to perform the identification of the charged particles emitted in nuclear reactions. In particular a presentation of an emulation framework is described where Assembler DSP algorithms are tested at full speed, while input and output are tested at low velocity, by using two host PC, simulating peripherals for the I/O data.
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