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A novel three-input approximate XOR gate design based on quantum-dot cellular automata

机译:基于量子点元胞自动机的新型三输入近似XOR门设计

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Quantum-dot cellular automata (QCA) are one of the most promising emerging nanoelectronic paradigms used for designing computers and very large-scale integration circuits. Many applications can tolerate the errors and imprecision of digital systems; thus, approximate computing is widely used in such cases. Exclusive OR (XOR) gates are among the major gates, based on which other gates could be developed. A three-input XOR gate is considered to be a basic gate in designing compressors as one of the most important parts of the arithmetic logic unit. Several studies have focused on the accuracy of XOR gate in the QCA technology. However, using approximation in designing XOR gates remains a significant concern in this regard. To the best of our knowledge, the present study is the first to introduce a novel three-input approximate XOR gate. This gate is utilized in designing approximate 4-2 compressors for reducing circuit complexity, which can be achieved by the minimum number of the gates and area-efficient designs.
机译:量子点细胞自动机(QCA)是用于设计计算机和超大规模集成电路的最有前途的新兴纳米电子范式之一。许多应用程序可以容忍数字系统的错误和不精确性。因此,在这种情况下,近似计算被广泛使用。异或(XOR)门属于主要的门,基于此可以开发其他门。在将压缩机设计为算术逻辑单元最重要的部分之一时,三输入XOR门被视为基本门。一些研究集中在QCA技术中XOR门的准确性上。然而,在这方面,在设计“异或”门时仍采用近似方法。据我们所知,本研究是第一个引入新型三输入近似XOR门的研究。该门用于设计大约4-2台压缩机,以减少电路复杂性,这可以通过最少数量的门和面积高效的设计来实现。

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