IPlock: An Effective Hybrid Encryption for Neuromorphic Systems IP Core Protection

Guorong He, Chen Dong, Yulin Liu, Xinwen Fan
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引用次数: 2

Abstract

Recent advances in resistive synaptic devices have enabled the emergence of brain-inspired smart chips. These chips can execute complex cognitive tasks in digital signal processing precisely and efficiently using an efficient neuromorphic system. The neuromorphic synapses used in such chips, however, are different from the traditional integrated circuit architectures, thereby weakening their resistance to malicious transformation and intellectual property (IP) counterfeiting. Accordingly, in this paper, we propose an effective hybrid encryption methodology for IP core protection in neuromorphic computing systems, in-corporating elliptic curve cryptography and SM4 simultaneously. Experimental results confirm that the proposed method can implement real-time encryption of any number of crossbar arrays in neuromorphic systems accurately, while reducing the time overhead by 14.40%–26.08%.
IPlock:一种有效的神经形态系统IP核保护混合加密
电阻式突触装置的最新进展使大脑启发的智能芯片得以出现。这些芯片可以使用高效的神经形态系统精确高效地执行数字信号处理中的复杂认知任务。然而,这种芯片中使用的神经形态突触与传统集成电路架构不同,从而削弱了它们对恶意转换和知识产权(IP)假冒的抵抗力。因此,在本文中,我们提出了一种有效的混合加密方法,用于神经形态计算系统的IP核保护,同时结合椭圆曲线加密和SM4。实验结果表明,该方法可以准确地实现神经形态系统中任意数量交叉棒阵列的实时加密,同时将时间开销降低14.40% ~ 26.08%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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