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October 1, 2025Electronics4 citationsOpen Access

HySecure: FPGA-Based Hybrid Post-Quantum and Classical Cryptography Platform for End-to-End IoT Security

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BZBohao ZhangJHJinfa HongGMGaoyu Mao

Key Points

  • HySecure achieves a notable speedup of 32.2× to 145.4× through FPGA-optimized cryptographic functions.
  • The platform effectively combines classical elliptic curve schemes with post-quantum schemes for enhanced security.
  • NS-3 simulations show acceptable latency and throughput, validating the hybrid approach for secure IoT communications.
  • The dual-signature scheme integrates EdDSA and Dilithium, ensuring authenticity and integrity in the handshake process.

Abstract

As the Internet of Things (IoT) continues to expand into mission-critical and long-lived applications, securing low-power wide-area networks (LPWANs) such as Narrowband IoT (NB-IoT) against both classical and quantum threats becomes imperative. Existing NB-IoT security mechanisms terminate at the core network, leaving transmission payloads exposed. This paper proposes HySecure, an FPGA-based hybrid cryptographic platform that integrates both classical elliptic curve and post-quantum schemes to achieve end-to-end (E2E) security for NB-IoT communication. Our architecture, built upon the lightweight RISC-V PULPino platform, incorporates hardware accelerators for X25519, Kyber, Ed25519, and Dilithium. We design a hybrid key establishment protocol combining ECDH and Kyber through HKDF, and a dual-signature scheme using EdDSA and Dilithium to ensure authenticity and integrity during handshake. Cryptographic functions are evaluated on FPGA, achieving a 32.2× to 145.4× speedup. NS-3 simulations under realistic NB-IoT configurations demonstrate acceptable latency and throughput for the proposed hybrid schemes, validating their practicality for secure constrained IoT deployments and communications.

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Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/68dd91d5fe798ba2fc499075https://doi.org/10.3390/electronics14193908
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