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A hybrid evolutionary analogue module placement algorithm for integrated circuit layout designs

机译:用于集成电路布图设计的混合进化模拟模块放置算法

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This paper presents an integrated approach of simulated annealing (SA) and genetic algorithm (GA) for the analogue module placement in mixed-signal integrated circuit layout designs. The proposed algorithm follows the optimization flow of a normal GA controlled by the methodology of SA. The bit-matrix chromosomal representation is employed to describe the location and the orientation of modules. Compared with the conventional bit-string representation, the proposed chromosomal representation tends to significantly improve the search efficiency. In addition, a slide-based flat scheme is developed to transform an absolute co-ordinate placement of modules to a relative placement. In this way, the symmetry constraints imposed on analogue very large scale integration circuits can be easily fulfilled in the placement run. Use of a radiation-decoder can also drastically shrink the configuration space without degrading search opportunities. The proposed algorithm has been tested with several example circuits. The experiments show this promising algorithm makes the better performance than the simpler SA or GA approaches working alone, and the quality of the automatically generated layouts is comparable to those done manually.
机译:本文为混合信号集成电路布图设计中的模拟模块放置提供了一种模拟退火(SA)和遗传算法(GA)的集成方法。所提出的算法遵循由SA方法控制的常规GA的优化流程。位矩阵染色体表示用于描述模块的位置和方向。与传统的位串表示相比,所提出的染色体表示倾向于显着提高搜索效率。另外,开发了基于幻灯片的平面方案以将模块的绝对坐标放置转换为相对放置。以这种方式,可以在贴装过程中轻松地满足施加在模拟超大规模集成电路上的对称约束。使用辐射解码器还可以大大缩小配置空间,而不会降低搜索机会。所提出的算法已通过几个示例电路进行了测试。实验表明,这种有希望的算法比单独使用简单的SA或GA方法具有更好的性能,并且自动生成的版图的质量与手动完成的版图相当。

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