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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >Power grid transient simulation in linear time based on transmission-line-modeling alternating-direction-implicit method
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Power grid transient simulation in linear time based on transmission-line-modeling alternating-direction-implicit method

机译:基于传输线建模交替方向隐式方法的线性时间电网暂态仿真

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摘要

The soaring clocking frequency and integration density demand robust and stable power delivery to support tens of millions of transistors switching. To ensure the design quality of power delivery, extensive transient power grid simulations need to be performed during the design process. However, the traditional circuit simulation engines are not scaled well for the complexity of power delivery. As a result, it often takes a long runtime and huge memory requirement to simulate a medium-sized power grid circuit. In this paper, the authors develop and present a new efficient transient simulation algorithm for power distribution. The proposed. algorithm, transmission-line-modeling alternating-direction-implicit (TLM-ADI), first models the power delivery structure as transmission line mesh structure, then solves the transient modified nodal analysis matrices by the alternating-direction-implicit method. The proposed algorithm, with linear runtime and memory requirement, is also unconditionally stable which ensures that the time-step is not limited by any stability requirement. Extensive experimental, results show that the proposed algorithm is not only orders of magnitude faster than SPICE but also extremely memory saving and accurate.
机译:飙升的时钟频率和集成密度要求强大而稳定的功率传输,以支持数千万个晶体管的开关。为了确保电力输送的设计质量,在设计过程中需要执行大量的瞬态电网仿真。然而,传统的电路仿真引擎由于功率传输的复杂性而无法很好地扩展。结果,模拟中型电网电路通常需要较长的运行时间和大量的内存需求。在本文中,作者开发并提出了一种用于配电的新型高效瞬态仿真算法。建议。该算法,即传输线建模交替方向隐式(TLM-ADI),首先将功率传输结构建模为传输线网格结构,然后通过交替方向隐式方法求解瞬态修正节点分析矩阵。所提出的算法具有线性的运行时间和内存需求,它也是无条件稳定的,从而确保了时间步长不受任何稳定性需求的限制。大量的实验结果表明,所提出的算法不仅比SPICE快几个数量级,而且极大地节省了存储空间并提高了准确性。

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