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Updates on the Security of FPGAs Against Power Analysis Attacks

机译:对电力分析攻击的FPGA安全性的更新

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This paper reports on the security of cryptographic algorithms implemented on FPGAs against power analysis attacks. We first present some improved experiments against these reconfigurable devices, due to an improved measurement process. Although it is usually believed that FPGAs are noisy targets for such attacks, it is shown that simple power consumption models can nearly perfectly correlate with actual measurements. Then, we evaluate how these correlation values depend on the resources used in the FPGAs. Finally, we investigate the possibility to counteract these attacks by using random pre-charges in the devices and determine how this technique allows a designer to increase the security of an implementation. These results confirm that side-channel attacks present a serious threat for most microelectronic devices, including FPGAs. To conclude, we discuss the security vs. efficiency tradeoffs.
机译:本文报告了对电力分析攻击在FPGA上实现的加密算法的安全性。我们首先由于改进的测量过程,请先对这些可重新配置设备进行一些改进的实验。虽然通常认为FPGA是对这种攻击的噪声目标,但结果表明,简单的功耗模型与实际测量几乎完全相同。然后,我们评估这些相关值如何取决于FPGA中使用的资源。最后,我们调查通过在设备中使用随机预收费来抵消这些攻击的可能性,并确定该技术如何允许设计者提高实现的安全性。这些结果证实,侧面通道攻击为大多数微电子设备提供了严重威胁,包括FPGA。要结束,我们讨论了安全与效率权衡。

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