RT-Blockchain: Achieving Time-Predictable Transactions
Seunghoon Lee, Sukmin Kang, Seungyeon Cho, Hyunwoo Koo, Sungjae Hwang, Jinkyu Lee
Abstract
Although blockchain technology is being increasingly utilized across various fields, the challenge of providing timing guarantees for transactions remains unmet, which is an obstacle in implementing blockchain solutions for time-sensitive applications such as high-frequency trading and real-time payments. In this paper, we propose the first solution to achieve a timing guarantee on blockchain. To this end, we raise and address two issues for timely transactions on a blockchain: (a) architectural support, and (b) real-time scheduling principles specialized for blockchain. For (a), we modify an existing blockchain network, offering an interface to preferentially select the transactions with the earliest deadlines. We then extend the blockchain network to provide the flexibility of the number of generated blocks at a single block time. Under such architectural supports, we achieve (b) with three steps. First, to resolve a discrepancy between a periodic request of a transaction-generating node and the corresponding arrival on a block-generating node, we translate the former into the latter, which eases the modeling of the transaction load imposed on the blockchain network. Second, we derive a schedulability condition of the modeled transaction load, which guarantees no missed deadline for all transactions under a work-conserving deadline-based scheduling policy. Last, we develop a lazy scheduling policy and its condition, which reduces the number of generated blocks without compromising the degree of timing guarantees for the work-conserving policy. By implementing RT-blockchain on top of an existing open-source blockchain project, we demonstrate the effectiveness of the proposed scheduling principles with architectural supports in not only ensuring timely transactions but also reducing the number of generating blocks.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 1293a6d5-2222-482f-83f3-af2a93c450ebBuilds on1
Related papers
- AgileShard: Turning the Sharded Blockchain into a Real-Time Transaction Processing SystemJianfeng Shi, Heng Wu, Wang Liu, Heran Gao et al.RTSS 2023
- Latency-First Smart Contract: Overclock the Blockchain for a whileHuayi Qi, Minghui Xu, Xiuzhen Cheng, Weifeng LyuINFOCOM 2023 · 6 citations
- Toward High-Performance Blockchain System by Blurring the Line between Ordering and ExecutionDonghyeon Ryu, Chanik ParkSC 2024 · 6 citations
- Timing Games in Responsive Consensus ProtocolsKaya Alpturer, Kushal Babel, Aditya SarafCCS 2026
- InTime: Towards Performance Predictability In Byzantine Fault Tolerant Proof-of-Stake ConsensusWeijie Sun, Zihuan Xu, Wangze Ni, Lei ChenSIGMOD 2025 · 5 citations
