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首页> 外文期刊>IEEE Transactions on Neural Networks >VLSI circuit placement with rectilinear modules using three-layer force-directed self-organizing maps
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VLSI circuit placement with rectilinear modules using three-layer force-directed self-organizing maps

机译:使用三层力导向自组织映射的直线模块进行VLSI电路布置

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摘要

In this paper, a three-layer force-directed self-organizing map is designed to resolve the circuit placement problem with arbitrarily shaped rectilinear modules. The proposed neural model with an additional hidden layer can easily model a rectilinear module by a set of hidden neurons to correspond the partitioned rectangles. With the collective computing from hidden neurons, these rectilinear modules can correctly interact with each other and finally converge to a good placement result. In this paper, multiple contradictory criteria are accounted simultaneously during the placement process, in which, both the wire length and the module overlap are reduced. The proposed model has been successfully exploited to solve the time consuming rectilinear module placement problem. The placement results of real rectilinear test examples are presented, which demonstrate that the proposed method is better than the simulated annealing approach in the total wire length. The appropriate parameter values which yield good solutions are also investigated.
机译:本文设计了一种三层力导向的自组织图,以解决任意形状的直线模块的电路布置问题。带有额外隐藏层的拟议神经模型可以通过一组隐藏神经元轻松地对直线模块进行建模,以对应分区后的矩形。通过隐藏神经元的集体计算,这些直线模块可以彼此正确交互,最终收敛到良好的放置结果。在本文中,在放置过程中同时考虑了多个矛盾的标准,从而减少了导线长度和模块重叠。所提出的模型已经成功地用于解决耗时的直线模块放置问题。给出了实际直线测试例的放置结果,表明该方法在总导线长度上优于模拟退火方法。还研究了产生良好解的适当参数值。

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