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May 17, 2026Cryptography0 citationsOpen Access

DPS: A Post-Quantum Proxy Signature Scheme from Dilithium for IoT Applications

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YWY H WangRDRuoyu DingTYTianrun Yu

Key Points

  • The aim is to develop a post-quantum proxy signature scheme for IoT that is secure against quantum attacks.
  • Propose an asynchronous remote key generation scheme based on CRYSTALS-Kyber to generate proxy keys of Dilithium.
  • Integrate the ARKG with the Dilithium signature scheme to form the DPS.
  • Ensure unlinkability, unforgeability, distinguishability, verifiability, and undeniability through formal proofs.
  • DPS achieves significant efficiency gains over existing schemes, with a 10× speedup for delegation and proxy signing phases.
  • Shows a 2.4× improvement in the verification phase.
  • Demonstrates formal proofs that support post-quantum security.

Abstract

Proxy signatures enable the secure delegation of signing authority, which is particularly useful in resource-constrained Internet of Things (IoT) environments. However, most existing schemes rely on classical hardness assumptions and therefore cannot resist quantum attacks. To address the challenge, we propose a post-quantum proxy signature scheme based on Dilithium for IoT scenarios. We first propose an asynchronous remote key generation (ARKG) scheme based on CRYSTALS-Kyber, enabling the delegator and proxy signer to generate proxy keys of Dilithium without real-time interaction. We further integrate ARKG with the Dilithium signature scheme to construct a proxy signature scheme called DPS while ensuring the unlinkability of proxy signatures. Additionally, our proposed DPS achieves post-quantum security and provides unforgeability, distinguishability, verifiability, and undeniability with formal proofs. Experimental performance evaluation shows that our scheme yields significant efficiency gains over existing quantum-safe proxy signature solutions, with 10× speedup for both the delegation and proxy signing phases, as well as a 2.4× improvement in the verification phase.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6a095ba67880e6d24efe17a4https://doi.org/10.3390/cryptography10030033
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Dilion: A Quantum-Resistant Digital Signature Scheme with Homomorphic Pairwise Verification2026
  2. 2Lattice-Based Certificateless Proxy Re-Signature for IoT: A Computation-and-Storage Optimized Post-Quantum Scheme2025
  3. 3PQ-Derived Schnorr: A Hybrid Post-Quantum Signature Scheme with Seamless Off-Chain to On-Chain Protocol Integration2026
  4. 4A Quantum Proxy Signature Scheme Without Restrictions on the Identity and Number of Verifiers2025
  5. 5Towards Post-Quantum Bitcoin Blockchain using Dilithium Signature2025