Lattice-Based Group Signatures: Achieving Full Dynamicity (and Deniability) with Ease
San Ling, Khoa Nguyen, Huaxiong Wang, Yanhong Xu

TL;DR
This paper introduces the first lattice-based group signature scheme that is fully dynamic and includes deniability, achieving efficiency improvements and satisfying strong security standards based on SIS and LWE assumptions.
Contribution
It presents a novel fully dynamic lattice-based group signature scheme with deniability, building on static constructions and simplifying the upgrade process.
Findings
Produces shorter signatures than previous static schemes
Achieves full dynamicity with simple modifications
Satisfies strong security models under SIS and LWE assumptions
Abstract
In this work, we provide the first lattice-based group signature that offers full dynamicity (i.e., users have the flexibility in joining and leaving the group), and thus, resolve a prominent open problem posed by previous works. Moreover, we achieve this non-trivial feat in a relatively simple manner. Starting with Libert et al.'s fully static construction (Eurocrypt 2016) - which is arguably the most efficient lattice-based group signature to date, we introduce simple-but-insightful tweaks that allow to upgrade it directly into the fully dynamic setting. More startlingly, our scheme even produces slightly shorter signatures than the former, thanks to an adaptation of a technique proposed by Ling et al. (PKC 2013), allowing to prove inequalities in zero-knowledge. Our design approach consists of upgrading Libert et al.'s static construction (EUROCRYPT 2016) - which is arguably the most…
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Taxonomy
TopicsCryptography and Data Security · Advanced Authentication Protocols Security · Security in Wireless Sensor Networks
