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The power grid transient simulation in linear time based on 3-D alternating-direction-implicit method

机译:基于3-D交替方向隐式方法的线性时间电网暂态仿真

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The rising power consumption and clock frequency of very large scale integration technology demand robust and stable power delivery. Extensive transient simulations on large-scale power delivery structures are required to analyze power delivery fluctuation caused by dynamic IR drop and Ldi/dt drop as well as package and on-chip resonance. In this paper, we develop a novel and efficient transient simulation algorithm for the power distribution networks. Our algorithm, three-dimensional (3-D) transmission-line-modeling alternating-direction-implicit (TLM-ADI) method, first models the power delivery structure as 3-D transmission line shunt-node structure and transfers those equations to the telegraph equation. Finally, we solve it by the alternating direction implicit method. The 3-D TLM-ADI method, with linear runtime and memory requirement, is also unconditionally stable, which ensures that the time steps are not limited by any stability requirement. Extensive numerical simulation results show that the proposed algorithm is not only over 300 000 times faster than SPICE but also extremely memory saving and accurate.
机译:大规模集成技术不断增长的功耗和时钟频率要求稳健而稳定的功率传输。需要对大型功率传输结构进行广泛的瞬态仿真,以分析由动态IR下降和Ldi / dt下降以及封装和片上谐振引起的功率波动。在本文中,我们为配电网络开发了一种新颖高效的暂态仿真算法。我们的算法,即三维(3-D)传输线建模交替方向隐式(TLM-ADI)方法,首先将功率传输结构建模为3-D传输线并联节点结构,然后将这些方程式传递给电报方程式。最后,我们通过交替方向隐式方法解决该问题。具有线性运行时间和内存要求的3-D TLM-​​ADI方法也是无条件稳定的,这确保了时间步长不受任何稳定性要求的限制。大量的数值模拟结果表明,所提出的算法不仅比SPICE快30万倍,而且极大地节省了存储空间并提高了准确性。

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