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首页> 外文期刊>Indian Journal of Science and Technology >Countermeasure against Side Channel Power Attacks in Cryptography Devices
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Countermeasure against Side Channel Power Attacks in Cryptography Devices

机译:密码学设备中对侧通道功率攻击的对策

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Power attack is the most powerful side channel attacks in cryptography chip during VLSI (Very Large Scale Integration) testing. Hackers attack the target devices by means of power through finding the correlations between the power spikes for different input generated on Cathode Ray Oscilloscope (CRO). To overcome such a great issues we proposed the novel techniques for cryptography devices which perform their crypto functions without an external power source. Energy required to do the cryptographic operation is provided by Embedded Capacitance Power Supply (ECPS) method, which is integrated with the VLSI device. Group of capacitors are connected to form the power supply, which act as the temporary battery of the cryptographic chip. The power spikes for this crypto operation not visible by the CRO. Hence it is complicate for attackers to hack the crypto system. The proposed method is modelled through Hardware Description Language (HDL) Verilog-AMS using Switch Level Modelling and result is verified by simulation wave form generated.
机译:在VLSI(超大规模集成)测试期间,电源攻击是加密芯片中最强大的侧通道攻击。黑客通过找到阴极射线示波器(CRO)上生成的不同输入的功率峰值之间的相关性,利用功率来攻击目标设备。为了克服如此巨大的问题,我们提出了一种用于密码设备的新颖技术,该设备无需外部电源即可执行其密码功能。加密操作所需的能量由嵌入式电容电源(ECPS)方法提供,该方法与VLSI器件集成在一起。连接电容器组以形成电源,该电源充当密码芯片的临时电池。 CRO无法看到此加密操作的功率峰值。因此,攻击者破解密码系统很复杂。通过硬件描述语言(HDL)Verilog-AMS使用开关级建模对提出的方法进行建模,并通过生成的仿真波形验证结果。

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