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Fast transient simulation algorithm for a 3D power distribution bus

机译:3D配电总线的快速瞬态仿真算法

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Extensive transient simulations for on-chip power delivery networks are required to analyze power delivery fluctuations caused by dynamic IR and Ldi/dt drops. Speed and memory has become a bottleneck for simulation of power distribution networks in modern VLSI design where clock frequency is of the order of GHz. The traditional SPICE based tools are very slow and consume a lot of memory during simulation. The problem is further aggravated for huge networks like power distribution network within a stack of ICs inter-connected through TSVs. This type of 3D power distribution network may contain billions of nodes at a time. In this paper we proposed a faster transient simulation algorithm using visual C++. First we reduce 3D power distribution bus containing n nodes to a two terminal π network. Then we solve this two terminal reduced network for voltages and currents. After this, we apply back solving algorithm to the network to solve it for each of the intermediate nodes using visual C++. The proposed algorithm is quite accurate with 1–2% error when compared with Ansoft Nexxim4.1. The proposed algorithm is several times faster than Ansoft Nexxim as well as consumes significantly less memory as compared to Nexxim.
机译:需要对片上功率传输网络进行广泛的瞬态仿真,以分析由动态IR和Ldi / dt压降引起的功率传输波动。在时钟频率约为GHz的现代VLSI设计中,速度和内存已成为模拟配电网络的瓶颈。传统的基于SPICE的工具非常慢,并且在仿真过程中会消耗大量内存。对于通过TSV互连的一堆IC内的大型网络(如配电网络),问题将进一步恶化。这种类型的3D配电网络可能一次包含数十亿个节点。在本文中,我们提出了一种使用Visual C ++的更快的瞬态仿真算法。首先,我们将包含n个节点的3D配电总线简化为两个终端π网络。然后,我们针对电压和电流解决了这两个终端简化网络。此后,我们将反向求解算法应用于网络,以使用Visual C ++对每个中间节点进行求解。与Ansoft Nexxim4.1相比,该算法非常准确,误差为1-2%。所提出的算法比Ansoft Nexxim快几倍,并且与Nexxim相比消耗的内存少得多。

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