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An Implementation of KFDD based Reversible Logic using IBM-Q Experience

机译:使用IBM-Q Experience的基于KFDD的可逆逻辑的实现

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Reversible logic is a circuit which has the ability to reduce the power dissipation. This type of logic circuit is used for the process of running the system both forward and backward.One of the main advantages of using any reversible logic is to get back the original data and to reduce the garbage output. Logic synthesis based on the Kronecker Functional Decision Diagram (KFDD) are generated for different reversible cascade methods both complemented and uncomplemented edge by using different reversible gates such as the CNOT (Controlled NOT), NOT, Toffoli gates, Peres gates, etc., and implemented in a quantum processor. In order to reduce the qubits which in turn reduces the quantum cost, it is implemented using reversible logic synthesis in KFDD method.The proposed method shows the implementation of these reversible circuits in an IBM quantum computer to find the probabilities, as it gives less quantum cost and also consumes less time when compared to other decision diagram. Reversible logic finds a wide range of applications in quantum computing and also in areas which deals with the low power design.This paper presents the implementation of KFDD using quantum circuits in IBM Quantum (IBM-Q) processor using different reversible logics and the output is discussed.
机译:可逆逻辑是一种能够降低功耗的电路。这种类型的逻辑电路用于系统正向和反向运行。使用任何可逆逻辑的主要优点之一是取回原始数据并减少垃圾输出。通过使用不同的可逆门(例如CNOT(受控NOT),NOT,Toffoli门,Peres门等)为不同的可逆级联方法(互补边和未互补边)生成基于Kronecker功能决策图(KFDD)的逻辑综合。在量子处理器中实现。为了减少量子位,从而降低了量子成本,它是在KFDD方法中使用可逆逻辑综合实现的。该方法展示了在IBM量子计算机中这些可逆电路的实现,以找到概率,因为它给出的量子较少与其他决策图相比,成本更高,并且所花费的时间更少。可逆逻辑在量子计算以及低功耗设计领域都有广泛的应用。本文介绍了在IBM Quantum(IBM-Q)处理器中使用不同可逆逻辑的量子电路在KFDD中的实现。讨论过。

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