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Synthesis of Reversible Universal Logic around QCA with Online Testability

机译:具有在线可测试性的QCA周围可逆通用逻辑的综合

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Quantum-dot Cellular Automata (QCA) can be a viable technology for CMPs (chip multi-processors) with thousands of processors. The QCA based reversible logic promises energy efficient design of the digital circuits. However, the requirement of excessive logic gates as well as its high defect rate limit the performance of a QCA based design. This work proposes a new approach to synthesize the reversible universal QCA logic gate (RUG) with the target to reduce the garbage outputs as well as the number of logic gates to realise a design simultaneously ensuring the defect tolerance. A concurrent error detection methodology is introduced to support the online testing of a circuit designed around the RUG. The experimental designs establish that the RUG can ensure an energy saving cost effective realization of testable QCA circuits.
机译:量子点元胞自动机(QCA)是具有数千个处理器的CMP(芯片多处理器)的可行技术。基于QCA的可逆逻辑保证了数字电路的节能设计。但是,过多的逻辑门及其高缺陷率的要求限制了基于QCA的设计的性能。这项工作提出了一种新的方法,该方法可以将可逆通用QCA逻辑门(RUG)与目标进行合成,以减少垃圾输出,并减少逻辑门的数量,以实现同时确保缺陷容忍度的设计。引入了并发错误检测方法,以支持围绕RUG设计的电路的在线测试。实验设计表明,RUG可以确保以节省成本的方式实现可测试QCA电路的成本效益。

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