Window Based BFT Blockchain Consensus
- Mohammad M. Jalalzai,
- Louisiana State University
Open access
Related Event
Title
Event type
ConferenceDate
07/30/2018 - 08/03/2018Location
Abstract
There is surge of interest to the blockchain technology not only in the scientific community but in the business community as well. Proof of Work (PoW) and Byzantine Fault Tolerant (BFT) are the two main classes of consensus protocols that are used in the blockchain consensus layer. PoW is highly scalable but very slow with about 7 (transactions/second) performance. BFT based protocols are highly efficient but their scalability are limited to only tens of nodes. One of the main reasons for the BFT limitation is the quadratic O(n^{2}) communication complexity of BFT based protocols for n nodes that requires n \times n broadcasting. In this paper, we present the Musch protocol which is BFT based and provides communication complexity O(fn+n) for f failures and n nodes, where f < n/3, without compromising the latency. Hence, the performance adjusts to f such that for constant f the communication complexity is linear. Musch achieves this by introducing the notion of exponentially increasing windows of nodes to which complains are reported, instead of broadcasting to all the nodes. To our knowledge, this is the first BFT-based blockchain protocol which efficiently addresses simultaneously the issues of communication complexity and latency under the presence of failures.
Publication Information
Output type
Host publication Subtitle
2018 IEEE Conferences on Internet of Things, Green Computing and Communications, Cyber, Physical and Social Computing, Smart Data, Blockchain, Computer and Information Technology, iThings/GreenCom/CPSCom/SmartData/Blockchain/CIT 2018Original language
English (US)Article number
8726602Pages from-to (Number of pages)
Pages 971-979 (9 pages)Publication milestones
- Published - 07/2018
Publication status
Publisher
Institute of Electrical and Electronics Engineers Inc.Publication series
- Publication series name: Proceedings - IEEE 2018 International Congress on Cybermatics: 2018 IEEE Conferences on Internet of Things, Green Computing and Communications, Cyber, Physical and Social Computing, Smart Data, Blockchain, Computer and Information Technology, iThings/GreenCom/CPSCom/SmartData/Blockchain/CIT 2018
ISBN (Electronic)
9781538679753Publication IDs
- Scopus: 85067860581
