首页> 外文期刊>Journal of Circuits, Systems, and Computers >QUANTUM LOGIC CIRCUIT DESIGN OF MANY-VALUED GALOIS REVERSIBLE EXPANSIONS AND FAST TRANSFORMS
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QUANTUM LOGIC CIRCUIT DESIGN OF MANY-VALUED GALOIS REVERSIBLE EXPANSIONS AND FAST TRANSFORMS

机译:多值盖洛伊斯可逆膨胀和快速变换的量子逻辑电路设计

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Many-valued quantum circuit synthesis of many-valued reversible expansions and fast transforms is introduced in this paper. Since the reduction of power consumption is a major requirement for the circuit design in future technologies, such as in quantum computing, the main features of several future technologies will include reversibility. Consequently, the new quantum circuits can play an important task in the design of future circuits that consume minimal power. In addition, the new quantum circuit methodology is general and can be used to realize any multiple-valued function in the quantum space. It is also shown that the structural generality advantage that results from the new design methodology is opposed with the increased quantum structural complexity disadvantage which may be considered in any further cost-benefit design analysis.
机译:介绍了多值可逆展开和快速变换的多值量子电路综合。由于降低功耗是未来技术(例如量子计算)中电路设计的主要要求,因此几种未来技术的主要特征将包括可逆性。因此,新的量子电路可以在功耗最小的未来电路设计中发挥重要作用。另外,新的量子电路方法是通用的,可用于实现量子空间中的任何多值函数。还表明,新设计方法产生的结构通用性优势与增加的量子结构复杂性劣势相对,后者可在任何进一步的成本效益设计分析中予以考虑。

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