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Computing electromagnetic fields in inhomogeneous media using lattice gas automata

机译:使用晶格气自动机计算非均匀介质的电磁场

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Lattice Gas Automata (LGA) can be considered as an alternative to the conventional differential equation description of problems in electromagnetics. LGAs are discrete dynamical systems that are based on a microscopic model of the physics being simulated. The basic constituents of an LGA are discrete cells. These cells are interconnected according to certain symmetric requirements to form an extremely large regular lattice. The cells of an LGA are extremely simple, requiring only a few bits to completely describe their states. Even through they are simple however, the collective behaviour of LGA microscopic systems are capable of exhibiting those behaviours described by partial differential equations for real physical systems. One type of simple LGA, the HPP LGA, is constructed with only a few bits per cell and operated on a rectangular lattice. We have demonstrated [1] that it is capable of simulating two dimensional electromagnetic fields. Furthermore, the inherent parallelism and simplicity of LGA algorithms make them ideally suited to implementation in a parallel processing architecture.
机译:格子气体自动机(LGA)可以被认为是传统微分方程对电磁中问题的描述的替代方案。 LGA是基于正在模拟物理学的微观模型的离散动态系统。 LGA的基本成分是离散细胞。这些细胞根据某些对称要求互连,以形成极大的常规晶格。 LGA的细胞非常简单,需要几个比特完全描述其状态。即使通过它们是简单的,LGA微观系统的集体行为也能够展示由用于真实物理系统的部分微分方程描述的那些行为。一种类型的简单LGA,HPP LGA,只有几个每个单元的位构造,并在矩形晶格上操作。我们已经证明了它能够模拟二维电磁场的能力。此外,LGA算法的固有并行性和简单性使其理想地适合于并行处理架构的实现。

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