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Design of New QCA LFSR and NLFSR for Grain-128 Stream Cipher

机译:用于128码流密码的新型QCA LFSR和NLFSR的设计。

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The use of quantum-dot cellular automata (QCA) technology for the design of logic circuits has shown to increase data transfer rates up to 2 THz. In QCA technology, circuits are designed to have an ultra-small feature size as well as ultra-low power consumption. Grain-128 is one of the best stream ciphers in the final list of the eSTREAM project. In this paper, we have designed and simulated the main blocks of this algorithm including XOR gate, linear-feedback shift register (LFSR) and nonlinear-feedback shift register (NLFSR) using QCA technology. The designs of these blocks using the QCA Designer simulator are given and the main factors such as area, complexity and delay are estimated. Furthermore, ModelSim software is used to simulate HDLQ model of the QCA Grain-128 stream cipher algorithm. The results indicate that the main parameters of the proposed Grain-128, such as area and throughput, are improved as well.
机译:量子点元胞自动机(QCA)技术在逻辑电路设计中的使用已显示出可以将数据传输速率提高到2 THz。在QCA技术中,电路被设计为具有超小特征尺寸以及超低功耗。 Grain-128是eSTREAM项目最终清单中最好的流密码之一。在本文中,我们使用QCA技术设计和仿真了该算法的主要模块,包括XOR门,线性反馈移位寄存器(LFSR)和非线性反馈移位寄存器(NLFSR)。给出了使用QCA Designer模拟器设计的这些模块,并估算了诸如面积,复杂性和延迟之类的主要因素。此外,使用ModelSim软件来模拟QCA Grain-128流密码算法的HDLQ模型。结果表明,提出的Grain-128的主要参数(如面积和吞吐量)也得到了改善。

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