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Funder: Future-Proof Unbiased Decentralized Randomness
Journal article

Funder: Future-Proof Unbiased Decentralized Randomness

Zengpeng Li, Mei Wang, Teik Guan Tan and Jianying Zhou
IEEE internet of things journal, Vol.11(6), pp.10352-10367
15/03/2024

Abstract

Blockchains Consensus protocol Cryptography Decentralized applications Decentralized random beacon (DRB) futureproof blockchain post-quantum Quantum computing Security Servers Terminology verifiable random function (VRF)
A trustworthy source of randomness is a crucial component of many decentralized and crypto-based application systems, especially blockchain consensus. A decentralized random beacon (DRB) periodically outputs a new source of randomness generated using a distributed technique, such as publicly verifiable secret sharing (PVSS) or distributed verifiable random functions (VRFs). These protocols offer a variety of efficiency versus randomness quality tradeoffs, but guarantee security under a variety of configurations, assumptions, and adversarial models. This article aims to provide a future-proof unbiased decentralized randomness (abbreviated as Funder) via a post-quantum threshold VRF for sustainable proof-of-stake blockchain. We also provide a generic compiler for achieving post-quantum VRF from a classical VRF solution, but our approach makes use of symmetric-key primitives Our novel compiler is validated and evaluated using the ZKBoo and ZKB++ quantum-secure zero-knowledge systems, respectively. The implementation of the proof-of-concept demonstrates that the overheads introduced by our solution are acceptable for real-world deployments even in the present day. In addition, we demonstrate the protocol's possible application in lottery-based proof-of-stake consensus protocols.

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