GPU Acceleration of a Non-Standard Finite Element Mesh Truncation Technique for Electromagnetics

被引:2
|
作者
Badia, Jose M. [1 ]
Amor-Martin, Adrian [2 ]
Belloch, Jose A. [3 ]
Emilio Garcia-Castillo, Luis [4 ]
机构
[1] Univ Jaume 1, Dept Ingn & Ciencia Comp, Castellon de La Plana 12071, Spain
[2] Univ Saarland, Lehrstuhl Theoret Elektrotech, D-66123 Saarbrucken, Germany
[3] Univ Carlos III Madrid, Dept Tecnol Elect, Madrid 28911, Spain
[4] Univ Carlos III Madrid, Dept Signal Theory & Commun, Madrid 28911, Spain
来源
IEEE ACCESS | 2020年 / 8卷
关键词
CUDA; electromagnetics; finite elements; GPU; FAST MULTIPOLE ALGORITHM; INTEGRAL METHOD; SCATTERING; RADIATION; FFT; IMPLEMENTATION; PERFORMANCE; COMPUTATION; CORE; BEM;
D O I
10.1109/ACCESS.2020.2993103
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The emergence of General Purpose Graphics Processing Units (GPGPUs) provides new opportunities to accelerate applications involving a large number of regular computations. However, properly leveraging the computational resources of graphical processors is a very challenging task. In this paper, we use this kind of device to parallelize FE-IIEE (Finite Element-Iterative Integral Equation Evaluation), a non-standard finite element mesh truncation technique introduced by two of the authors. This application is computationally very demanding due to the amount, size and complexity of the data involved in the procedure. Besides, an efficient implementation becomes even more difficult if the parallelization has to maintain the complex workflow of the original code. The proposed implementation using CUDA applies different optimization techniques to improve performance. These include leveraging the fastest memories of the GPU and increasing the granularity of the computations to reduce the impact of memory access. We have applied our parallel algorithm to two real radiation and scattering problems demonstrating speedups higher than 140 on a state-of-the-art GPU.
引用
收藏
页码:94719 / 94730
页数:12
相关论文
共 50 条
  • [1] CONVERGENCE STUDY OF A NON-STANDARD SCHWARZ DOMAIN DECOMPOSITION METHOD FOR FINITE ELEMENT MESH TRUNCATION IN ELECTROMAGNETICS
    Fernandez-Recio, R.
    Garcia-Castillo, L. E.
    Llorente-Romano, S.
    Gomez-Revuelto, I.
    [J]. PROGRESS IN ELECTROMAGNETICS RESEARCH-PIER, 2011, 120 : 439 - 457
  • [2] Solving cylindrical shell problems with a non-standard finite element
    Della Croce, L
    Scapolla, T
    [J]. MATHEMATICS AND COMPUTERS IN SIMULATION, 1999, 50 (1-4) : 153 - 164
  • [3] A Finite Element Mesh Truncation Technique for Scattering and Radiation Problems in HPC Environments
    Amor-Martin, Adrian
    Garcia-Donoro, Daniel
    Emilio Garcia-Castillo, Luis
    [J]. 2017 COMPUTING AND ELECTROMAGNETICS INTERNATIONAL WORKSHOP (CEM'17), 2017, : 33 - 34
  • [4] ANALYSIS OF A NON-STANDARD MIXED FINITE ELEMENT METHOD WITH APPLICATIONS TO SUPERCONVERGENCE
    Brandts, Jan H.
    [J]. APPLICATIONS OF MATHEMATICS, 2009, 54 (03) : 225 - 235
  • [5] Analysis of a non-standard mixed finite element method with applications to superconvergence
    Jan H. Brandts
    [J]. Applications of Mathematics, 2009, 54 : 225 - 235
  • [6] Evaluation of Hexahedral Mesh Quality for Finite Element Method in Electromagnetics
    Motooka, Y.
    Noguchi, S.
    Igarashi, H.
    [J]. APPLIED ELECTROMAGNETIC ENGINEERING FOR MAGNETIC, SUPERCONDUCTING AND NANOMATERIALS, 2011, 670 : 318 - 324
  • [7] ANALYSIS OF A NON-STANDARD FINITE ELEMENT METHOD BASED ON BOUNDARY INTEGRAL OPERATORS
    Hofreither, Clemens
    Langer, Ulrich
    Pechstein, Clemens
    [J]. ELECTRONIC TRANSACTIONS ON NUMERICAL ANALYSIS, 2010, 37 : 413 - 436
  • [8] Moving Mesh Non-standard Finite Difference Method for Nonlinear Heat Transfer in a Thin Finite Rod
    Bisheh-Niasar, M.
    Ameri, M. Arab
    [J]. JOURNAL OF APPLIED AND COMPUTATIONAL MECHANICS, 2018, 4 (03): : 161 - 166
  • [9] AN EFFICIENT GPU ACCELERATION FORMAT FOR FINITE ELEMENT ANALYSIS
    Tian Jin
    Li Gong
    Fei Wu
    Zeng Guohui
    [J]. Journal of Electronics(China), 2013, 30 (06) : 599 - 608
  • [10] Mesh truncation in finite element modal analysis of dielectric waveguides
    Cucinotta, A
    Selleri, S
    Vincetti, L
    Zoboli, M
    [J]. ELECTROMAGNETICS, 2002, 22 (04) : 331 - 343