Asynchronous Dynamic Committee Proactive Secret Sharing for Large Data
Zhenliang Lu, Tianyi Zhang, Alan David Fekete, Kwok‐Yan Lam, Qiang Tang · 2025
There is a recent surge of studies on dynamic-committee proactive secret sharing (DPSS), in which not only will the shares be periodically refreshed (proactive secret sharing), but also the parties who hold the shares will be dynamically changed. It has direct applications in blockchain systems that require committees to manage confidential information, as well as in decentralized storage networks with dynamic participant involvement. Despite substantial attention, DPSS still has high communication complexity, particularly with large-size input data. In this article, we initiate the study of dynamic-committee proactive information dispersal (DPID). From a conceptual perspective, we can regard DPID as DPSS without the requirement for confidentiality. We model and construct DPID schemes with significantly reduced complexity. To demonstrate its efficiency, we also present a general framework for compiling our DPID into DPSS. By integrating our DPID construction, we achieve the first DPSS with much lower communication complexity for large-size data, whose benefits can be clearly shown in our experiments.