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A Generalized Floating-Point Representation and Manipulation of Quantum Signals Based on IEEE-754

机译:基于IEEE-754的量子信号的广义浮点表示和操纵

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摘要

Quantum information processing has become increasingly attractive in the past few decades due to its extraordinary performance. However, few results of quantum signal and its related manipulations based on quantum computation have emerged in recent years. The paper proposes a generalized floating-point representation of quantum signals (GFPRQS), which is improved by represent an arbitrary quantum signal with p + q qubits. In a floating-point representation, although every number is approximated using three registers, this format allows to represent a much larger range of values with a given number of qubits than a fixed-pointing representation. Based on GFPRQS representation, we first present the quantum circuits to accomplish basic signal modules (i.e., multiplyby 2 module, halving module, comparator module, swap module, etc,). And then, we design a composite module (i.e., sort module). At the end of the paper, to indicate the usability of the model GFPRQS an example involving the mean filtering and its quantum circuit is given.
机译:由于其非凡的表现,量子信息处理在过去几十年中变得越来越有吸引力。然而,近年来出现了少数Quantum信号的结果及其基于量子计算的相关操纵。该论文提出了量子信号(GFPRQ)的广义浮点表示,其通过代表具有P + Q QUBits的任意量子信号而得到改善。在浮点表示中,尽管使用三个寄存器近似每个数字,但这种格式允许表示与定向指向表示的给定数量的Qubits的大量值范围大。基于GFPRQ表示,我们首先介绍量子电路以完成基本信号模块(即,多重2模块,减半模块,比较器模块,交换模块等)。然后,我们设计一个复合模块(即,排序模块)。在纸张结束时,表示模型GFPRQ的可用性,涉及平均滤波的示例及其量子电路。

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