Autors: Malaj, E. G., Marinova, G. I.
Title: Study of the secrecy in hardware logical encryption with multiple bit keys
Keywords: VHDL;Hardware security;Deceptiveness;Secrecy;FPGA

Abstract: Secure logical encryption is achieved when the required corruption factor and secrecy of the keys are ensured. In this paper we will analyze functional hardware security FHS, which we will analyze in two different dimensions: 1. Functional Hardware Security Corruption and Deceptiveness factors and Secrecy, 2. Functional Hardware Security (FHS) key-space size 2- and 3-bit keys are considered. FHS is evaluated in different types of hardware encryption logic (XOR/NXOR, MUX, Flipflop), where using an experimental setup the hamming distance between incorrect and correct output for incorrect activation keys, the corruption and deceptiveness factors, and the secrecy are evaluated and compared. The simulation will be performed on Zed board (family of ZYNQ 7000 field programmable gate array-FPGA devices) and Viv ado software (version 2014.2). The purpose of this paper is to determine which of the studied encryptions is more secure.

References

    Issue

    2023 IEEE International Workshop on Technologies for Defense and Security, TechDefense 2023, pp. 336–340, 2023, Italy, IEEE Xplore, doi: 10.1109/TechDefense59795.2023.10380831.

    Copyright IEEE

    Вид: публикация в международен форум, публикация в реферирано издание, индексирана в Scopus и Web of Science