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On error models for RTL security evaluations., , , , , и . DTIS, стр. 1-6. IEEE, (2014)Design Space Exploration for Ultra-Low-Energy and Secure IoT MCUs., , , , , и . ACM Trans. Embed. Comput. Syst., 19 (3): 19:1-19:34 (2020)Security and Reliability Evaluation of Countermeasures implemented using High-Level Synthesis., , , , и . IOLTS, стр. 1-8. IEEE, (2022)Laser Fault Injection at the CMOS 28 nm Technology Node: an Analysis of the Fault Model., , , , , , , , , и 3 other автор(ы). FDTC, стр. 1-6. IEEE Computer Society, (2018)On a Security-oriented Design Framework for Medical IoT Devices: The Hardware Security Perspective., , , , , и . DSD, стр. 301-308. IEEE, (2020)Laser-Induced Fault Effects in Security-Dedicated Circuits., , , , , , , , , и 5 other автор(ы). VLSI-SoC (Selected Papers), том 464 из IFIP Advances in Information and Communication Technology, стр. 220-240. Springer, (2014)Cross-layer analysis of software fault models and countermeasures against hardware fault attacks in a RISC-V processor., , , , и . Microprocess. Microsystems, (2019)Analyzing the Impact of Approximate Adders on the Reliability of FPGA Accelerators., , и . ETS, стр. 1-2. IEEE, (2021)On the Performance of Non-Profiled Differential Deep Learning Attacks against an AES Encryption Algorithm Protected using a Correlated Noise Generation based Hiding Countermeasure., , , , и . DATE, стр. 614-617. IEEE, (2020)Validation of RTL laser fault injection model with respect to layout information., , , , , и . HOST, стр. 78-81. IEEE Computer Society, (2015)