By Wenhua Yu, Xiaoling Yang, Yongjun Liu, Department of Electrical and Computer Engineering Raj Mittra, Akira Muto
The finite-difference time-domain (FDTD) procedure has revolutionized antenna layout and electromagnetics engineering. here is a state of the art ebook that makes a speciality of the functionality optimization and engineering purposes of FDTD simulation structures. masking the most recent advancements during this zone, this specified source supply pros professional recommendation at the FDTD approach, systems, and community structures. in addition the e-book bargains advice in distinguishing among the numerous diverse electromagnetics software program programs out there this present day. execs additionally discover a entire bankruptcy devoted to huge multi-scale challenge fixing. This functional reference is supported with 250 illustrations, 128 equations, and eleven appendixes jam-packed with useful facts processing suggestions on the topic of the FDTD process.
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Additional info for Advanced FDTD Method: Parallelization, Acceleration, and Engineering Applications (Artech House Electromagnetic Analysis)
The Intel processor has a higher clock frequency than the AMD; it can process more operations in the same cycle than the AMD and it optimizes the cache hit rate better than the AMD. However, since the AMD has a greater number of VALUs in a similar-level CPU than the Intel, the VALU-based FDTD code on the AMD is more cost-efficient than the Intel. 4 An EM simulation workstation with multiple cores or multiple processors. Today, we can easily place four CPUs with 48 cores and 48 VALUs inside one computer.
We need not use a small cell size to model its thickness, because it just functions as a connection. Since there may be many fine structures nearby, the adaptive mesh generation may not capture this fine feature. 2(c). 3. However, we will still need to ensure that the mesh inside the fine structure is continuous. 2 (b) Thin structure key point key point (c) Local mesh distribution Mesh design scheme for (a) a cell phone model, (b) a thin slanted structure, and (c) the local mesh distribution for the thin structure.
OpenMP is developed for the efficient use of multicore processors and the MPI library is developed to use the distributed resource. The single instruction and multiple data (SIMD) [14−19] combined with OpenMP and MPI are used for accelerating the FDTD code on both the GPU [20−23] and VALU. Multicore processor and computer cluster have been successfully used for various large and complex electromagnetic problems for many years. Although a 19 20 Advanced FDTD Methods large number of publications have been focused on the GPU acceleration, there are many challenging issues today for GPU to solve practical electromagnetic problems.
Advanced FDTD Method: Parallelization, Acceleration, and Engineering Applications (Artech House Electromagnetic Analysis) by Wenhua Yu, Xiaoling Yang, Yongjun Liu, Department of Electrical and Computer Engineering Raj Mittra, Akira Muto