通过在输电网中插入额外条纹来优化电压降

Jai-Ming Lin, Yu-Tien Chen, Yang-Tai Kung, H. Lin
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摘要

随着电网复杂性的增加,电网优化成为现代电网设计的重要环节。为了构建一个鲁棒的PDN,大多数经典的PDN优化方法都集中在调整功率条纹的尺寸上。然而,当电压冲突区域也存在严重的路由拥塞时,这种方法就不可行了。因此,本文提出了一个微妙的过程,以插入额外的电源条纹,以减少电压冲突,同时保持可达性。一开始,识别出IR-drop高相关区域,以显示那些需要更多电流的位置。然后,我们解决了一个最小成本流问题,以找到从电源到这些区域的电力输送路径(PDP)的拓扑结构,并确定每个PDP的边缘宽度,以便向这些区域提供足够的电流。此外,通过动态规划在路由拥塞较少和电压违和严重的位置插入垂直功率条(vps),以降低路由可达性恶化的概率。最后,如果仍然存在电压违例,则将更多导线插入到ir降高相关区域。实验结果表明,该方法可以减少路由资源的使用,减少路由拥塞,满足工业设计中的IR-drop约束。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltage-Drop Optimization Through Insertion of Extra Stripes to a Power Delivery Network
As the complexity increases, power delivery network (PDN) optimization becomes a more important step in a modern design. In order to construct a robust PDN, most classic PDN optimization methods focus on adjusting the dimensions of power stripes. However, this approach becomes infeasible when voltage violation regions also have severe routing congestion. Hence, this paper proposes a delicate procedure to insert additional power stripes to reduce voltage violation while maintaining routability. In the beginning, IR-drop high related regions are identified to reveal those locations which are thirsty for more currents. Then, we solve a minimum-cost flow problem to find the topologies of power delivery paths (PDPs) from power sources to these regions and determine the widths of edges in each PDP so that enough currents can be provided to these regions. Moreover, vertical power stripes (VPSs for short) are inserted to the locations which have less routing congestion and severe voltage violations by the dynamic programming to reduce a probability to deteriorate routability. Finally, more wires will be inserted to IR-drop high related regions if there still exist voltage violations. Experimental results show that our method can use much less routing resource and induce less routing congestion to meet IR-drop constraint in industry designs.
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