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首页> 外文期刊>電子情報通信学会技術研究報告. 超伝導エレクトロニクス >Design of an Extremely Energy-Efficient Hardware Algorithm Using Adiabatic Superconductor Logic and Its Digital Modeling Approach
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Design of an Extremely Energy-Efficient Hardware Algorithm Using Adiabatic Superconductor Logic and Its Digital Modeling Approach

机译:使用绝热超导逻辑及其数字建模方法设计极其节能硬件算法及其数字建模方法

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摘要

We designed and implemented an extremely energy-efficient hardware algorithm using adiabatic quantum-flux-parametron (AQFP) logic based on a hardware-algorithm known as the Collatz conjecture. The circuit is composed of mergers, odd-even check stages, path controllers, processing units, terminating stages, together with a feedback loop. This design is at least 3 orders of magnitude better in energy efficiency compared to rapid-single-flux-quantum (RSFQ) designs and is superior to semiconductor-based designs even when including the power dissipation of a cryocooler. Furthermore, we also proposed an HDL-based approach for large-scaled AQFP circuit design, since there is no such digital simulation environment up to date.
机译:我们使用基于称为Collatz猜想的硬件算法的硬件算法设计和实现了极其节能的硬件算法。 该电路由合并,奇数偶数检查阶段,路径控制器,处理单元,终止阶段与反馈回路组成。 与快速单通道 - 量子(RSFQ)设计相比,该设计与能量效率更好的节能至少3个数量级,并且即使在包括低温冷却器的功率耗散时也优于基于半导体的设计。 此外,我们还提出了一种基于HDL的大规模AQFP电路设计方法,因为没有最新的数字仿真环境。

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