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Design of Feedback Shift Register of Against Power Analysis Attack

机译:抗功耗分析攻击的反馈移位寄存器设计

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Stream ciphers based on linear feedback shift register (LFSR) are suitable for constrained environments, such as satellite communications, radio frequency identification devices tag, sensor networks and Internet of Things, due to its simple hardware structures, high speed encryption and lower power consumption. LFSR, as a cryptographic primitive, has been used to generate a maximum period sequence. Because the switching of the status bits is regular, the power consumption of the LFSR is correlated in a linear way. As a result, the power consumption characteristics of stream cipher based on LFSR are vulnerable to leaking initialization vectors under the power attacks. In this paper, a new design of LFSR against power attacks is proposed. The power consumption characteristics of LFSR can be masked by using an additional LFSR and confused by adding a new filter Boolean function and a flip-flop. The design method has been implemented easily by circuits in this new design in comparison with the others.
机译:基于线性反馈移位寄存器(LFSR)的流密码由于其简单的硬件结构,高速加密和较低的功耗而适合于受限环境,例如卫星通信,射频识别设备标签,传感器网络和物联网。 LFSR作为一种加密原语,已用于生成最大周期序列。由于状态位的切换是常规的,因此LFSR的功耗以线性方式关联。结果,基于LFSR的流密码的功耗特性容易受到功耗攻击下初始化向量的泄漏。本文提出了一种针对电力攻击的LFSR的新设计。 LFSR的功耗特性可以通过使用额外的LFSR来掩盖,而通过添加新的滤波器布尔函数和触发器来混淆。与其他设计相比,这种新设计中的电路易于实现该设计方法。

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