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Analog circuit topology synthesis by means of evolutionary computation

机译:模拟电路拓扑综合的进化计算

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Designing an analog electrical circuit requires substantial effort and time by a highly-skilled designer. Many tools have been devised to aid engineers in the design procedure, from simulators to parameter optimization tools, which largely assist in fine-tuning the parameter values of circuits with predetermined topologies. In this paper, we propose a new approach to circuit optimization that is capable of searching not only for the parameter but also the topological space. Starting from a high-level statement describing a desired circuit functionality, the proposed method can either improve a given circuit, or create a novel topology with given resources, based on the Darwinian theory of evolutionary selection. Our method uses a global parameter optimization method PSADE to speed up evolutionary convergence. We use the proposed algorithm (both single- and multi-objective) to successfully evolve passive, active, and BiCMOS circuits.
机译:设计模拟电路需要高技能的设计人员大量的精力和时间。从仿真器到参数优化工具,已经设计出许多工具来帮助工程师进行设计过程,这些工具在很大程度上有助于微调具有预定拓扑的电路的参数值。在本文中,我们提出了一种电路优化的新方法,该方法不仅可以搜索参数,还可以搜索拓扑空间。从描述所需电路功能的高级说明开始,基于达尔文进化选择理论,所提出的方法可以改进给定电路,或者使用给定资源创建新颖的拓扑。我们的方法使用全局参数优化方法PSADE来加速进化收敛。我们使用提出的算法(单目标和多目标)成功地发展了无源,有源和BiCMOS电路。

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