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Open-ended evolution to discover analogue circuits for beyond conventional applications

机译:开放式演进,发现超越常规应用的模拟电路

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Analogue circuits synthesised by means of open-ended evolutionary algorithms often have unconventional designs. However, these circuits are typically highly compact, and the general nature of the evolutionary search methodology allows such designs to be used in many applications. Previous work on the evolutionary design of analogue circuits has focused on circuits that lie well within analogue application domain. In contrast, our paper considers the evolution of analogue circuits that are usually synthesised in digital logic. We have developed four computational circuits, two voltage distributor circuits and a time interval metre circuit. The approach, despite its simplicity, succeeds over the design tasks owing to the employment of substructure reuse and incremental evolution. Our findings expand the range of applications that are considered suitable for evolutionary electronics.
机译:通过开放式进化算法合成的模拟电路通常具有非常规的设计。然而,这些电路通常高度紧凑,并且进化搜索方法的一般性质允许这种设计用于许多应用中。以前关于模拟电路的进化设计的工作集中在恰好位于模拟应用领域内的电路上。相反,我们的论文考虑了通常在数字逻辑中合成的模拟电路的发展。我们已经开发了四个计算电路,两个电压分配器电路和一个时间间隔计电路。尽管采用了简单的方法,但由于采用了子结构重用和渐进式演化,因此该方法成功地胜过了设计任务。我们的发现扩大了被认为适合于进化电子学的应用范围。

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