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Bottleneck Crosstalk Minimization in Three-Layer Channel Routing

机译:三层通道路由中的瓶颈串扰最小化

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Channel routing and crosstalk minimization are important concerns while we talk about high-performance circuits for two-, three-, and multilayer VLSI physical design automation. Interconnection among the net terminals satisfying constraints in an intelligent way is a necessity to realize a circuit within a minimum possible area, as this is a principal requirement to diminish cost as well as to augment yield. Introduction of a layer of interconnects may increase the cost of routing; however, as the area is minimized, cost is reduced as well. Eventually, the total wire length is also reduced. Therefore, there are several trade-offs. Besides, in high-performance routing, a designer is supposed to lessen the amount of electrical hazards, viz., crosstalk as much as possible. In this paper, we particularly work on minimizing bottleneck crosstalk in the three-layer HVH routing model. Here, along with area minimization, computed circuits' performance has also been enhanced by computing precise bottleneck crosstalk HVH channel routing solutions. By the way, the specified crosstalk minimization problem is NP-hard. Thus, in this paper, heuristic algorithms have been devised for computing optimized bottleneck crosstalk channel routing solutions. Computed results of our proposed algorithms are greatly encouraging.
机译:频道路由和串扰最小化是重要的问题,同时我们讨论了两个,三个和多层VLSI物理设计自动化的高性能电路。以智能方式满足限制的网络终端之间的互连是实现最小可能区域内的电路的必要性,因为这是减少成本以及增强产量的主要要求。引入一层互连可能会增加路由成本;但是,由于该区域最小化,因此也减少了成本。最终,总线长度也降低。因此,有几个权衡。此外,在高性能路由中,设计师应尽可能减少电气危险,串扰。在本文中,我们特别研究三层HVH路由模型中的瓶颈串扰。这里,随着区域最小化,通过计算精确的瓶颈串扰HVH通道路由解决方案,还通过计算了电路的性能。顺便说一下,指定的串扰最小化问题是NP-HARD。因此,在本文中,设计了启发式算法,用于计算优化的瓶颈串扰通道路由解决方案。我们所提出的算法的计算结果非常令人鼓舞。

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