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Explorations in design space: unconventional electronics design through artificial evolution

机译:设计领域的探索:通过人工进化的非常规电子设计

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摘要

Three hypotheses are formulated. First, in the "design space" of possible electronic circuits, conventional design methods work within constrained regions, never considering most of the whole. Second, evolutionary algorithms can explore some of the regions beyond the scope of contentional methods, raising the possibility that better designs can be found. Third, evolutionary algorithms can in practice produce designs that are beyond the scope of conventional methods, and that are in some sense better. A reconfigurable hardware controller for a robot is evolved, using a conventional architecture with and without orthodox design constraints. In the unconstrained case, evolution exploited the enhanced capabilities of the hardware. A tone discriminator circuit is evolved on an FPGA without constraints, resulting in a structure and dynamics that are foreign to conventional design and analysis. The first two hypotheses are true. Evolution can explore the forms and processes that are natural to the electronic medium, and nonbehavioral requirements can be integrated into this design process, such as fault tolerance. A strategy to evolve circuit robustness tailored to the task, the circuit, and the medium, is presented. Hardware and software tools enabling research progress are discussed. The third hypothesis is a good working one: practically useful but radically unconventional evolved circuits are in sight.
机译:提出了三个假设。首先,在可能的电子电路的“设计空间”中,常规的设计方法在受约束的区域内工作,而从未考虑全部。其次,进化算法可以探索超出竞争方法范围的某些区域,从而提高了找到更好设计的可能性。第三,进化算法在实践中可以产生超出常规方法范围的设计,并且在某种意义上更好。使用具有和不具有正统设计约束条件的常规体系结构,开发了用于机器人的可重新配置硬件控制器。在不受限制的情况下,演进利用了硬件的增强功能。音调鉴别器电路在FPGA上不受限制地发展,其结构和动态特性对于常规设计和分析而言是陌生的。前两个假设是正确的。 Evolution可以探索电子媒介自然形成的形式和过程,并且非行为要求可以集成到此设计过程中,例如容错。提出了一种根据任务,电路和介质量身定制的电路稳健性发展策略。讨论了有助于研究进展的硬件和软件工具。第三个假设是一个有效的假设:实用的,但从根本上非常规的进化电路已经出现。

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