EDBT 2026 Demo / reviewers in the wild / expert
Lide Xue
dblp:248/0163
· DBLP profile ↗
9ranked-venue papers
4as first author
9since 2021 · last 2026
0000-0002-6278-7094ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Systems, architecture and hardware · 3 · 1 first-author · 3 since 2021Applied, interdisciplinary, general and emerging computing · 3 · 2 first-author · 3 since 2021Computer networks · 1 · 1 since 2021Security and privacy · 1 · 1 since 2021Human-computer interaction and ubiquitous computing · 1 · 1 since 2021Theory of computation · 1 · 1 first-author · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Efficient quantum detectable weak Byzantine agreement with optimal fault-tolerant boundabstractQuantum entanglement can be employed in some distributed communication tasks to reduce computation and communication overheads, yielding speedups over their classical counterparts. However, existing quantum Byzantine protocols often entail excessive communication and entanglement resource consumption. Conversely, classical schemes face insecurity with the impending reality of quantum computers. To address these challenges, we present a novel quantum Detectable Weak Byzantine Agreement (DWBA) protocol with high practicability, security and optimal fault-tolerance bound. For all n players, our protocol can complete the consensus of infinite classical information via fixed n + 1 -entangled qubits and a digest function, which requires infinite entanglement resources in previous schemes. Moreover, our protocol can tolerate arbitrary t ( t < n ) faulty players without necessitating any additional initial setup information (e.g., digital signature, private random coins). In terms of efficiency, our protocol only requires O (1) rounds and O ( ( n − t ) 2 ) communication complexity, constituting an order of magnitude improvement over previous protocols. In addition, the DWBA problem solved by our protocol is inherently stronger than the 3-player Detectable Byzantine Agreement (DBA) problem solved by previous protocols, and in a weaker but sufficiently practical model, our protocol can achieve Weak Byzantine Agreement (WBA). Lide Xue, Wei Yang 0011, Bingren Chen, Weilin Chen 0002, Liusheng Huang |
Inf. Comput. | 1 |
| 2026 | VWchain: A lightweight scalable edge-side blockchain based on Value-Witness
Lide Xue, Ming-Zheng Wang, Xin Wang 0002 |
J. Syst. Archit. | 1 |
| 2026 | BMchain: Design of an Account-Driven and Regulatory-Friendly Stateless Layer-2 BlockchainabstractBlockchain faces significant challenges in scalability, user practicality, and regulatory compliance, especially ason-chain data grows. Stateless blockchains (SBCs) reduce node storage by moving stateoff-chain, but introduce critical issues: they require frequent witness updates that force users to remain online, and prevent regulatory nodes from independently verifying transaction histories. To address these limitations, we propose BMchain, an end-to-end SBC that innovates in data structure and collaboration model. BMchain maintains a lightweight main chain (under 2 MB per block) by recording only Bloom filters and Merkle roots of transactions. This design allows users to transact without being constantly online and enables regulators to verify data completeness and correctness solely fromon-chain information. Experimental results show BMchain achieves over 10 000 TPS throughput, reduces annual account storage to around 200 MB, and confirms transactions within 2 min at scale—significantly outperforming existing solutions. Unlike accumulator-based approaches, BMchain fundamentally decouples local state updates from global ledger changes, offering a practical and regulatory-friendly SBC architecture. Lide Xue, Ming-Zheng Wang, Xin Wang 0002 |
IEEE Trans. Comput. Soc. Syst. | 1 |
| 2025 | EZchain: A Secure Scalable Blockchain Protocol via Passive ShardingabstractRecently, many sharding blockchain protocols have sacrificed some important attributes to improve scalability, and this makes them complicated and insecure. Moreover, achieving a constant (rather than linear) Communication Cost Per Transaction (CCPT) is still a challenge for many sharding protocols. Motivated by this, we present EZchain, a scalable blockchain protocol via “passive sharding” with proven validity and security. We redesign the Value-Centric Blockchains (VCB) framework to achieve the passive sharding that helps EZchain reach higher security than traditional sharding protocols. With fixed initialization parameters, the expected value of EZchain's communication cost reaches a constant level, and it is independent of the network's size. Moreover, the EZchain node's storage cost without beacon chains also approaches a constant and does not change with the increase in the network's size and transactions. Cross-shard transactions, network sharding algorithm, and anti-Sybil attack verification are no longer needed in passive sharding, thus EZchain is very concise and efficient. Our experiment uses a lightweight EZchain prototype and extends the experimental network size up to 100,000 nodes. The evaluation results show that EZchain satisfies all our analyses of its performance (the constant communication and non-beacon storage cost) in large networks. In addition, the comparison experiment shows that ezchain has obvious advantages over the previous protocols in long-term operation and large network environments. Wei Yang 0011, Weilin Chen 0002, Lide Xue, Wenjie Zou, Liusheng Huang |
IEEE Trans. Dependable Secur. Comput. | 3 |
| 2025 | LBDT: A Lightweight Blockchain-Based Data Trading Scheme in Internet of Vehicles Using Proof-of-ReputationabstractThe exponential growth of data in the Internet of Vehicles (IoV) has created opportunities to improve traffic safety and efficiency through data trading. However, establishing trust among highly mobile and resource-constrained vehicles poses significant challenges for effective data trading in IoV. To address this issue, we propose a lightweight blockchain-based data trading scheme (LBDT), which ensures secure and efficient data trading in IoV. We introduce a proof-of-reputation (PoR) consensus mechanism to establish trustworthiness for data trading. Specifically, we use a progressive reputation mechainism to support the PoR consensus. LBDT utilizes a parallel-chain structure for the PoR consensus to minimize communication and storage costs while reducing transaction confirmation latency. Additionally, we adopt a double auction mechanism as an incentivizing strategy to encourage vehicle participation in data trading. We evaluate the performance of LBDT through extensive experiments. The experimental results demonstrate that LBDT is highly effective and secure, achieving a transaction latency of approximately 4 seconds. Moreover, LBDT successfully mitigates communication and storage overheads by over 90%, thus establishing its superiority over state-of-the-art solutions under comparable conditions. Weilin Chen 0002, Wei Yang 0011, Mingjun Xiao, Lide Xue, Shaowei Wang 0003 |
IEEE Trans. Mob. Comput. | 4 |
| 2024 | AutoMiner: Reinforcement Learning-Based Mining Attack Simulator
Lide Xue, Ziyang Han, Bingren Chen, Xishan Zhang, Xuehai Zhou |
ICA3PP (1) | 2 |
| 2024 | ECFO: An Efficient Edge Classification-Based Fusion Optimizer for Deep Learning CompilersabstractOperation fusion is a critical technique in optimizing deep learning compilers as it enhances computational efficiency by integrating multiple operations into a single computational graph. However, finding an effective fusion strategy is challenging, requiring the definition of an optimization search space and identification of the best strategy within this space. Existing methods, such as heuristic searches and learning-based searches, have significant limitations. Heuristic searches are complex, labor-intensive, and often lack generalizability across different network architectures. On the other hand, learning-based methods demand extensive training and pro-longed search time. To address these challenges, we introduce the Edge Classification-Based Fusion Optimizer (ECFO), a novel approach that reconceptualizes operation fusion as an edge classification problem. By leveraging Graph Neural Networks (GNNs) for efficient graph feature encoding, ECFO streamline the optimization process and significantly reduces computational overhead. Comprehensive evaluations across diverse neural networks demonstrate that ECFO decrease search time by up to 23x and improves inference performance by 3.2%, representing a substantial advancement over existing strategies. Wei Li 0008, Kangcheng Liu, Lide Xue, Zidong Du, Xishan Zhang, Xuehai Zhou |
SMC | 5 |
| 2023 | Avalon: A Scalable and Secure Distributed Transaction Ledger Based on Proof-of-MarketabstractBlockchain technology has gained widespread use. However, it faces several challenges including throughput, transaction delay, security, and decentralization. This paper presents the Avalon protocol based on a novel Proof-of-Market (PoM) consensus mechanism to address these issues. PoM is a type of Proof-of-Work (PoW) consensus that incorporates market-driven leader election and shifts PoW from mining pools to consumers based on transactions. The matching incentive mechanism makes PoM incentive compatible. PoM decouples the scalability and security of Bitcoin, which means that Avalon can optimize the capacity and interval of blocks without compromising other performance goals. Our analysis shows that Avalon can tolerate malicious nodes possessing up to$\bf{1/3}$of the network's total computational power. Furthermore, the implementation of Avalon is similar to Bitcoin and is highly concise. We evaluate the performance of Avalon through a simulated network of over$\bf{1,000}$nodes. Experimental results demonstrate that Avalon can achieve a throughput of$\bf{4,000}$TPS (transactions per second), which is significantly better than state-of-the-art schemes ($\bf{10\boldsymbol{\times}}$Bitcoin-NG,$\bf{5\boldsymbol{\times}}$ByzCoin, and$\bf{4\boldsymbol{\times}}$Algorand). Additionally, it has a transaction confirmation delay of up to$\bf{40}$s, which is twice better than Bitcoin-NG and ByzCoin while experiencing only minimal blockchain splits and maintaining excellent decentralization. Weilin Chen 0002, Wei Yang 0011, Lide Xue, Bingren Chen, Youwen Zhu, Liusheng Huang |
IEEE Trans. Computers | 3 |
| 2022 | A Blockchain-Based Protocol for Malicious Price Discrimination
Lide Xue, Ya-Jun Liu, Wei Yang 0011, Weilin Chen 0002, Liusheng Huang |
J. Comput. Sci. Technol. | 1 |