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An improved heuristic technique for nearest neighbor realization of quantum circuits in 2D architecture

机译:2D架构中量子电路最近邻实现的改进启发式技术

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Last couple of years has witnessed tremendous advancements in the field of quantum computing and even it has started providing technological footprints in the design industry. Though advancements in the physical implementation of quantum circuits has taken a giant leap but it has faced with several design challenges and one such design constraint is Nearest Neighbor (NN) criteria which demands the operating qubits of the quantum gates to be adjacent.Focusing on the design issue, here, we show a heuristic design technique for efficient transformation of quantum circuits to NN based designs in 2D configuration. Our entire strategy is based on initial qubit mapping policy, where we have introduced three different mapping techniques 1) Influence Index, 2) Adjacency Matrix and 3) Distance Ratio based strategy. After placing the qubits in appropriate positions, we also undertake a dynamic windowing based local reordering scheme to further reduce the SWAP requirement in the designs. At the end of the work, to check the effectiveness of our transformation algorithms, we have tested a wide range of benchmarks over our algorithms and a comparative study over state-of-the-art design techniques also has been undertaken.
机译:过去几年目睹了量子计算领域的巨大进步,甚至已经开始在设计行业提供技术脚印。虽然量子电路的物理实施方面的进步已经采取了巨大的飞跃,但它面临着几种设计挑战,并且一个这样的设计约束是最接近的邻居(NN)标准,这要求量子门的操作QUBITS相邻。汇集设计问题,在这里,我们展示了一种高效地将量子电路转换为基于NN的2D配置的启发式设计技术。我们的整个策略基于初始Qubit映射策略,我们已经引入了三种不同的映射技术1)影响指数,2)邻接矩阵和3)距离比基于策略。将贵位放置在适当的位置后,我们还进行了一种基于动态的窗口的本地重新排序方案,以进一步降低设计中的交换要求。在工作结束时,要检查我们的转型算法的有效性,我们已经测试了我们的算法上的各种基准,以及对最先进的设计技术的比较研究也在进行。

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