Practical Asynchronous Distributed Key Generation: Improved Efficiency, Weaker Assumption, and Standard Model

Haibin Zhang, Sisi Duan*, Chao Liu*, Boxin Zhao*, Xuanji Meng, Shengli Liu, Yong Yu, Fangguo Zhang, Liehuang Zhu*

*此作品的通讯作者

科研成果: 书/报告/会议事项章节会议稿件同行评审

4 引用 (Scopus)

摘要

Distributed key generation (DKG) allows bootstrapping threshold cryptosystems without relying on a trusted party, nowadays enabling fully decentralized applications in blockchains and multiparty computation (MPC). While we have recently seen new advancements for asynchronous DKG (ADKG) protocols, their performance remains the bottleneck for many applications, with only one protocol being implemented (DYX+ ADKG, IEEE S&P 2022). DYX+ ADKG relies on the Decisional Composite Residuosity assumption (being expensive to instantiate) and the Decisional Diffie-Hellman assumption, incurring a high latency (more than 100s with a failure threshold of 16). Moreover, the security of DYX+ ADKG is based on the random oracle model (ROM) which takes hash function as an ideal function; assuming the existence of random oracle is a strong assumption, and up to now, we cannot find any theoretically-sound implementation. Furthermore, the ADKG protocol needs public key infrastructure (PKI) to support the trustworthiness of public keys. The strong models (ROM and PKI) further limit the applicability of DYX+ ADKG, as they would add extra and strong assumptions to underlying threshold cryptosystems. For instance, if the original threshold cryptosystem works in the standard model, then the system using DYX+ ADKG would need to use ROM and PKI. In this paper, we design and implement a modular ADKG protocol that offers improved efficiency and stronger security guarantees. We explore a novel and much more direct reduction from ADKG to the underlying blocks, reducing the computational overhead and communication rounds of ADKG in the normal case. Our protocol works for both the low-threshold and high-threshold scenarios, being secure under the standard assumption (the well-established discrete logarithm assumption only) in the standard model (no trusted setup, ROM, or PKI).

源语言英语
主期刊名Proceedings - 2023 53rd Annual IEEE/IFIP International Conference on Dependable Systems and Networks, DSN 2023
出版商Institute of Electrical and Electronics Engineers Inc.
568-581
页数14
ISBN(电子版)9798350347937
DOI
出版状态已出版 - 2023
活动53rd Annual IEEE/IFIP International Conference on Dependable Systems and Networks, DSN 2023 - Porto, 葡萄牙
期限: 27 6月 202330 6月 2023

出版系列

姓名Proceedings - 2023 53rd Annual IEEE/IFIP International Conference on Dependable Systems and Networks, DSN 2023

会议

会议53rd Annual IEEE/IFIP International Conference on Dependable Systems and Networks, DSN 2023
国家/地区葡萄牙
Porto
时期27/06/2330/06/23

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