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椭圆曲线点乘的抗故障攻击FSM控制器设计
引用本文:严迎建,李志强,段二朋,朱巍巍.椭圆曲线点乘的抗故障攻击FSM控制器设计[J].计算机应用,2012,32(1):86-88.
作者姓名:严迎建  李志强  段二朋  朱巍巍
作者单位:信息工程大学 电子技术学院,郑州 450004
摘    要:为提高有限状态机(FSM)控制器的抗故障攻击能力,提出一种非并发故障检测方案。方案利用线性码的故障检错特性,通过在状态机电路中建立故障传播路径来实现。设计了基于NAF编码的从左至右扫描点乘算法的安全有限状态机电路,并对该电路进行了仿真验证与分析。通过仿真验证,与并发故障检测方案相比,该设计能够在减少状态机频繁译码工作量的情况下,正确检测错误并报警,提高了抗故障攻击能力。

关 键 词:故障攻击  椭圆曲线  有限状态机  非并发  
收稿时间:2011-08-19
修稿时间:2011-09-27

Fault resistant finite state machine controller design of elliptic curve scalar multiplication
YAN Ying-jian LI Zhi-qiang DUAN Er-peng ZHU Wei-wei.Fault resistant finite state machine controller design of elliptic curve scalar multiplication[J].journal of Computer Applications,2012,32(1):86-88.
Authors:YAN Ying-jian LI Zhi-qiang DUAN Er-peng ZHU Wei-wei
Affiliation:Institute of Electronic Technology, Information Engineering University, Zhengzhou Henan 450004, China
Abstract:To enhance its resistibility to fault attacks, this paper proposed a non-concurrent fault detection scheme for controller circuit based on Finite State Machine (FSM). Using linear codes, this scheme was carried out by constructing one path to detect faults in the FSM. Finally, this paper used the scheme to design the security FSM circuit for NAF-based left-to-right scalar multiplication algorithm, and simulated and analyzed the circuit in resistibility to fault attacks. Through the simulation, and compared with the scheme of concurrent error detection, in the case of reducing frequently decoding workload of the state machine, this design can detect the error correctly and alarm, and it also improves the ability of fighting against fault attacks.
Keywords:fault attack                                                                                                                        elliptic curve                                                                                                                        Finite State Machine (FSM)                                                                                                                        non-concurrent
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