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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Efficient Algorithms for Crank–Nicolson-Based Finite-Difference Time-Domain Methods
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Efficient Algorithms for Crank–Nicolson-Based Finite-Difference Time-Domain Methods

机译:基于Crank–Nicolson的有限差分时域方法的高效算法

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This paper presents new efficient algorithms for implementing 3-D Crank-Nicolson-based finite-difference time-domain (FDTD) methods. Two recent methods are considered, namely, the Crank-Nicolson direct-splitting (CNDS) and Crank-Nicolson cycle-sweep-uniform (CNCSU) FDTD methods. The algorithms involve update equations whose right-hand sides are much simpler and more concise than the original ones. Analytical proof is provided to show the equivalence of original and present methods. Comparison of their implementations signifies substantial reductions of the floating-point operations count in the new algorithms. Other computational aspects are also optimized, particularly in regard to the for-looping overhead and the memory space requirement. Through numerical simulation and Fourier stability analysis, it is found that while the CNDS FDTD is unconditionally stable, the CNCSU FDTD may actually become unstable.
机译:本文提出了一种新的高效算法,可用于实现基于3-D Crank-Nicolson的有限差分时域(FDTD)方法。考虑了两种最新的方法,即Crank-Nicolson直接分裂(CNDS)和Crank-Nicolson周期扫描均匀(CNCSU)FDTD方法。该算法涉及更新方程,其更新方程的右侧比原始方程简单得多且更简洁。提供了分析证明以证明原始方法和当前方法的等效性。比较它们的实现,意味着新算法中的浮点运算数量将大大减少。还优化了其他计算方面,尤其是在循环开销和存储空间要求方面。通过数值模拟和傅立叶稳定性分析,发现尽管CNDS FDTD是无条件稳定的,但CNCSU FDTD实际上可能变得不稳定。

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