An Energy-Efficient Reconfigurable DTLS Cryptographic Engine for End-to-End Security in IoT Applications

March 11, 2019 Β· Declared Dead Β· πŸ› IEEE International Solid-State Circuits Conference

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Authors Utsav Banerjee, Chiraag Juvekar, Andrew Wright, Arvind, Anantha P. Chandrakasan arXiv ID 1903.04387 Category cs.CR: Cryptography & Security Citations 50 Venue IEEE International Solid-State Circuits Conference Last Checked 5 months ago
Abstract
This paper presents a reconfigurable cryptographic engine that implements the DTLS protocol to enable end-to-end security for IoT. This implementation of the DTLS engine demonstrates 10x reduction in code size and 438x improvement in energy-efficiency over software. Our ECC primitive is 237x and 9x more energy-efficient compared to software and state-of-the-art hardware respectively. Pairing the DTLS engine with an on-chip RISC-V allows us to demonstrate applications beyond DTLS with up to 2 orders of magnitude energy savings.
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