2013•Unpublished venueRequires access

Security paradigm of FPGA against Differential Power Analysis attack

Jaganath Prasad Mohanty, Kamala Kanta Mahapatra

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Abstract

Cryptographic implementation is one of the vital applications for FPGAs with security as its major standpoint. But it still requires a lot of efforts to keep it aloof from attacks like Side Channel Attacks (SCA). One of the major attacks that threaten the security of FPGA implementation of cryptographic algorithm is Differential Power Analysis (DPA). In this paper, we have discussed various approaches to defend against DPAs. These new programs suggested in the different approaches with some results aid in evenly distributing the power consumption in FPGAs making it less prone to DPAs.

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What this paper is about

Cryptographic implementation is one of the vital applications for FPGAs with security as its major standpoint. But it still requires a lot of efforts to keep it aloof from attacks like Side Channel Attacks (SCA). One of the major attacks that threaten the security of FPGA implementation of cryptographic algorithm is Differential Power Analysis (DPA). In this paper, we have discussed various approaches to defend against DPAs. These new programs suggested in the different approaches with some results aid in evenly distributing the power consumption in FPGAs making it less prone to DPAs.

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Available abstract

Cryptographic implementation is one of the vital applications for FPGAs with security as its major standpoint. But it still requires a lot of efforts to keep it aloof from attacks like Side Channel Attacks (SCA). One of the major attacks that threaten the security of FPGA implementation of cryptographic algorithm is Differential Power Analysis (DPA). In this paper, we have discussed various approaches to defend against DPAs. These new programs suggested in the different approaches with some results aid in evenly distributing the power consumption in FPGAs making it less prone to DPAs.

Key concepts: Power analysis, Field-programmable gate array, Side channel attack, Cryptography, Computer science, Computer security, Power consumption, Embedded system

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