Baobao Chai

dblp:273/8780 · DBLP profile ↗
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9ranked-venue papers
2as first author
8since 2021 · last 2026
0000-0003-3938-8113ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 3 · 3 since 2021Computer networks · 3 · 1 first-author · 2 since 2021Security and privacy · 2 · 2 since 2021Human-computer interaction and ubiquitous computing · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2026 Unveiling the true potential of blockchain consensus: A comprehensive survey
Jiguo Yu, Baobao Chai, Qin Hu 0001, Tianqing He, Jianyuan Li, Jian Meng
J. Syst. Archit.2
2025 BAFL-SVM: A blockchain-assisted federated learning-driven SVM framework for smart agriculture
abstract
The combination of blockchain and Internet of Things technology has made significant progress in smart agriculture, which provides substantial support for data sharing and data privacy protection. Nevertheless, achieving efficient interactivity and privacy protection of agricultural data remains a crucial issues. To address the above problems, we propose a blockchain-assisted federated learning-driven support vector machine (BAFL-SVM) framework to realize efficient data sharing and privacy protection. The BAFL-SVM is composed of the FedSVM-RiceCare module and the FedPrivChain module. Specifically, in FedSVM-RiceCare, we utilize federated learning and SVM to train the model, improving the accuracy of the experiment. Then, in FedPrivChain, we adopt homomorphic encryption and a secret-sharing scheme to encrypt the local model parameters and upload them. Finally, we conduct a large number of experiments on a real-world dataset of rice pests and diseases, and the experimental results show that our framework not only guarantees the secure sharing of data but also achieves a higher recognition accuracy compared with other schemes.
Ruiyao Shen, Hongliang Zhang 0006, Baobao Chai, Wenyue Wang, Biwei Yan, Jiguo Yu
High Confid. Comput.3
2025 EBIAS: ECC-enabled blockchain-based identity authentication scheme for IoT device
abstract
In the Internet of Things (IoT), a large number of devices are connected using a variety of communication technologies to ensure that they can communicate both physically and over the network. However, devices face the challenge of a single point of failure, a malicious user may forge device identity to gain access and jeopardize system security. In addition, devices collect and transmit sensitive data, and the data can be accessed or stolen by unauthorized user, leading to privacy breaches, which posed a significant risk to both the confidentiality of user information and the protection of device integrity. Therefore, in order to solve the above problems and realize the secure transmission of data, this paper proposed EBIAS, a secure and efficient blockchain-based identity authentication scheme designed for IoT devices. First, EBIAS combined the Elliptic Curve Cryptography (ECC) algorithm and the SHA-256 algorithm to achieve encrypted communication of the sensitive data. Second, EBIAS integrated blockchain to tackle the single point of failure and ensure the integrity of the sensitive data. Finally, we performed security analysis and conducted sufficient experiment. The analysis and experimental results demonstrate that EBIAS has certain improvements on security and performance compared with the previous schemes, which further proves the feasibility and effectiveness of EBIAS.
Wenyue Wang, Biwei Yan, Baobao Chai, Ruiyao Shen, Anming Dong, Jiguo Yu
High Confid. Comput.3
2024 BAV-DSS: Blockchain Assisted Verifiable Data Sharing Scheme with Fast Encryption and Outsourced Decryption for IoT
Zhongyuan Yu, Baobao Chai
ICA3PP (3)4
2024 BSCDA: Blockchain-Based Secure Cross-Domain Data Access Scheme for Internet of Things
abstract
In the current hypergrowth phase of the Internet of Things, cross-domain data access becomes more and more frequently. Whereas, the lack of trust between domains makes cross-domain data access extremely hard. Traditional schemes typically depend on a third party to establish trust between data accessing entities, which can easily result in single point of failure. To conquer the aforementioned challenge, this paper proposes BSCDA, a blockchain-based cross-domain data access scheme designed to enable secure data transmission across domains. The decentralization, transparency, and anti-tampering features of blockchain perfectly solve the issue of single point of failure and foster trust among various domains. Specifically, a certificate management method is developed to address the certificate storage issue by leveraging a mapping table to store the revocation certificate index on the blockchain. This method not only ensures the verifiability of the certificate but also reduces the storage overhead. Additionally, a four-party key agreement mechanism is designed to guarantee the secure data transmission during the process of cross-domain data access. Security analysis prove the feasibility of our proposed scheme. Extensive experiments demonstrate the superiority of our scheme in cross-domain data access.
Baobao Chai, Jiguo Yu, Biwei Yan, Yong Yu 0002, Shengling Wang 0001
IEEE Trans. Netw. Serv. Manag.1
2023 BACTDS: Blockchain-Based Fined-Grained Access Control Scheme with Traceablity for IoT Data Sharing
Jiguo Yu, Biwei Yan, Suhui Liu, Baobao Chai
ICA3PP (1)5
2023 Blockchain-Assisted Comprehensive Key Management in CP-ABE for Cloud-Stored Data
abstract
Public clouds have drawn increasing attention from academia and industry due to their high computational and storage performance. Attribute-based encryption (ABE) is the most promising technology to simultaneously achieve confidentiality and fine-grained access control of the cloud-stored data. However, traditional ABE that relies on centralized authority faces several key management issues, such as the key escrow, key distribution, key tracking, key update, and heavy communication and computing overhead for users, which will cause security concerns and impede its widespread application. On the other hand, blockchain technology preserves distributed ledgers to ensure the immutability and transparency of data, which can further solve the security vulnerabilities caused by system centralization. This paper proposes a blockchain-assisted transformation method to solve all the key management problems mentioned above in ciphertext-policy ABE by utilizing technologies such as secret sharing protocols. In addition, our transformation method realizes two additional benefits: outsourced decryption and efficient user revocation, which are extremely valuable for practical implementations. We simulate a demonstration by adopting the most popular permissioned blockchain, Hyperledger Fabric. The security and efficiency analysis reveals that the scheme obtained from our transformation method can achieve replayable chosen-ciphertext security with extremely efficient decryption.
Suhui Liu, Jiguo Yu, Liquan Chen, Baobao Chai
IEEE Trans. Netw. Serv. Manag.4
2022 BHE-AC: a blockchain-based high-efficiency access control framework for Internet of Things
Baobao Chai, Biwei Yan, Jiguo Yu
Pers. Ubiquitous Comput.1
2020 Blockchain-Based Service Recommendation Supporting Data Sharing
Biwei Yan, Jiguo Yu, Yue Wang 0107, Qiang Guo 0002, Baobao Chai, Suhui Liu
WASA (1)5