Find the 'Best' Solution from Multiple Analog Topologies via Pareto-Optimality
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概要
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This paper presents a novel method using multi-objective optimization algorithm to automatically find the best solution from a topology library of analog circuits. Firstly this method abstracts the Pareto-front of each topology in the library by SPICE simulation. Then, the Pareto-front of the topology library is abstracted from the individual Pareto-fronts of topologies in the library followed by the theorem we proved. The best solution which is defined as the nearest point to specification on the Pareto-front of the topology library is then calculated by the equations derived from collinearity theorem. After the local searching using Nelder-Mead method maps the calculated best solution backs to design variable space, the non-dominated best solution is obtained. Comparing to the traditional optimization methods using single-objective optimization algorithms, this work can efficiently find the best non-dominated solution from multiple topologies for different specifications without additional time-consuming optimizing iterations. The experiments demonstrate that this method is feasible and practical in actual analog designs especially for uncertain or variant multi-dimensional specifications.
- (社)電子情報通信学会の論文
- 2009-12-01
著者
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YOSHIOKA Masato
Fujitsu Laboratory Ltd.
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Liu Yu
Fujitsu Laboratories Ltd.
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Liu Yu
Fujitsu Lab. Ltd. Kawasaki‐shi Jpn
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Yoshioka Masato
Fujitsu Laboratories Ltd.
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HOMMA Katsumi
Fujitsu Laboratories LTD.
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SHIBUYA Toshiyuki
Fujitsu Laboratories of America, Inc.
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Shibuya Toshiyuki
Fujitsu Laboratories Of America Inc.
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- Find the 'Best' Solution from Multiple Analog Topologies via Pareto-Optimality