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SNOW-SCA: ML-assisted Side-Channel Attack on SNOW-V
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abstract
This paper presents SNOW-SCA, the first power side-channel analysis (SCA) attack of a 5G mobile communication security standard candidate, SNOW-V, running on a 32-bit ARM Cortex-M4 microcontroller. First, we perform a generic known-key correlation (KKC) analysis to identify the leakage points. Next, a correlation power analysis (CPA) attack is performed, which reduces the attack complexity to two key guesses for each key byte. The correct secret key is then uniquely identified utilizing linear discriminant analysis (LDA). The profiled SCA attack with LDA achieves 100% accuracy after training with $<200$ traces, which means the attack succeeds with just a single trace. Overall, using the \textit{combined CPA and LDA attack} model, the correct secret key byte is recovered with <50 traces collected using the ChipWhisperer platform. The entire 256-bit secret key of SNOW-V can be recovered incrementally using the proposed SCA attack. Finally, we suggest low-overhead countermeasures that can be used to prevent these SCA attacks.
Forward citations
Cited by 1 Pith paper
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Securing Open RAN: A Survey of Cryptographic Challenges and Emerging Solutions for 5G
A survey of cryptographic challenges in Open RAN for 5G, covering bidding-down attacks, interface encryption gaps, and 256-bit ciphers like SNOW-V, ZUC-256, and AES-256.
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