VLDB 2026 Research / reviewers in the wild / expert
Jinyue Xia
dblp:76/7667
· DBLP profile ↗
12ranked-venue papers
1as first author
4since 2021 · last 2022
0000-0003-0089-7033ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 10 · 4 since 2021Databases, data management, data science and information retrieval · 1Human-computer interaction and ubiquitous computing · 1 · 1 first-author
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2022 | Revocable Attribute-Based Encryption With Data Integrity in CloudsabstractCloud computing enables enterprises and individuals to outsource and share their data. This way, cloud computing eliminates the heavy workload of local information infrastructure. Attribute-based encryption has become a promising solution for encrypted data access control in clouds due to the ability to achieve one-to-many encrypted data sharing. Revocation is a critical requirement for encrypted data access control systems. After outsourcing the encrypted attribute-based ciphertext to the cloud, the data owner may want to revoke some recipients that were authorized previously, which means that the outsourced attribute-based ciphertext needs to be updated to a new one that is under the revoked policy. The integrity issue arises when the revocation is executed. When a new ciphertext with the revoked access policy is generated by the cloud server, the data recipient cannot be sure that the newly generated ciphertext guarantees to be decrypted to the same plaintext as the originally encrypted data, since the cloud server is provided by a third party, which is not fully trusted. In this article, we consider a new security requirement for the revocable attribute-based encryption schemes: integrity. We introduce a formal definition and security model for the revocable attribute-based encryption with data integrity protection (RABE-DI). Then, we propose a concrete RABE-DI scheme and prove its confidentiality and integrity under the defined security model. Finally, we present an implementation result and provide performance evaluation which shows that our scheme is efficient and practical. Chunpeng Ge 0001, Willy Susilo, Joonsang Baek, Zhe Liu 0001, Jinyue Xia, Liming Fang 0001 |
IEEE Trans. Dependable Secur. Comput. | 5 |
| 2022 | A Verifiable and Fair Attribute-Based Proxy Re-Encryption Scheme for Data Sharing in CloudsabstractTo manage outsourced encrypted data sharing in clouds, attribute-based proxy re-encryption (ABPRE) has become an elegant primitive. In ABPRE, a cloud server can transform an original recipient’s ciphertext to a new one of a shared user’s. As the transformation is computation consuming, a malicious cloud server may return an incorrect re-encrypted ciphertext to save its computation resources. Moreover, a shared user may accuse the cloud server of returning an incorrect re-encrypted ciphertext to refuse to pay the cost of using the cloud service. However, existing ABPRE schemes do not support a mechanism to achieve verifiability and fairness. In this article, a novel verifiable and fair attribute-based proxy re-encryption (VF-ABPRE) scheme is introduced to support verifiability and fairness. The verifiability enables a shared user to verify whether the re-encrypted ciphertext returned by the server is correct and the fairness ensures a cloud server escape from malicious accusation if it has indeed conducted the re-encryption operation honestly. Additionally, we conduct a performance experiment to show the efficiency and practicality of the new VF-ABPRE scheme. Chunpeng Ge 0001, Willy Susilo, Joonsang Baek, Zhe Liu 0001, Jinyue Xia, Liming Fang 0001 |
IEEE Trans. Dependable Secur. Comput. | 5 |
| 2021 | Revocable Identity-Based Broadcast Proxy Re-Encryption for Data Sharing in CloudsabstractCloud computing has become prevalent due to its nature of massive storage and vast computing capabilities. Ensuring a secure data sharing is critical to cloud applications. Recently, a number of identity-based broadcast proxy re-encryption (IB-BPRE) schemes have been proposed to resolve the problem. However, the IB-BPRE requires a cloud user (Alice) who wants to share data with a bunch of other users (e.g., colleagues) to participate the group shared key renewal process because Alice's private key is a prerequisite for shared key generation. This, however, does not leverage the benefit of cloud computing and causes the inconvenience for cloud users. Therefore, a novel security notion named revocable identity-based broadcast proxy re-encryption (RIB-BPRE) is presented to address the issue of key revocation in this work. In a RIB-BPRE scheme, a proxy can revoke a set of delegates, designated by the delegator, from the re-encryption key. The performance evaluation reveals that the proposed scheme is efficient and practical. Chunpeng Ge 0001, Zhe Liu 0001, Jinyue Xia, Liming Fang 0001 |
IEEE Trans. Dependable Secur. Comput. | 3 |
| 2021 | Secure Keyword Search and Data Sharing Mechanism for Cloud ComputingabstractThe emergence of cloud infrastructure has significantly reduced the costs of hardware and software resources in computing infrastructure. To ensure security, the data is usually encrypted before it's outsourced to the cloud. Unlike searching and sharing the plain data, it is challenging to search and share the data after encryption. Nevertheless, it is a critical task for the cloud service provider as the users expect the cloud to conduct a quick search and return the result without losing data confidentiality. To overcome these problems, we propose a ciphertext-policy attribute-based mechanism with keyword search and data sharing (CPAB-KSDS) for encrypted cloud data. The proposed solution not only supports attribute-based keyword search but also enables attribute-based data sharing at the same time, which is in contrast to the existing solutions that only support either one of two features. Additionally, the keyword in our scheme can be updated during the sharing phase without interacting with the PKG. In this article, we describe the notion of CPAB-KSDS as well as its security model. Besides, we propose a concrete scheme and prove that it is against chosen ciphertext attack and chosen keyword attack secure in the random oracle model. Finally, the proposed construction is demonstrated practical and efficient in the performance and property comparison. Chunpeng Ge 0001, Willy Susilo, Zhe Liu 0001, Jinyue Xia, Pawel Szalachowski, Liming Fang 0001 |
IEEE Trans. Dependable Secur. Comput. | 4 |
| 2020 | A physiological and behavioral feature authentication scheme for medical cloud based on fuzzy-rough core vector machine
Liming Fang 0001, Changchun Yin, Lu Zhou 0002, Yang Li 0103, Chunhua Su, Jinyue Xia |
Inf. Sci. | 6 |
| 2020 | Corrigendum to "A New User Behavior Evaluation Method in Online Social Network" Journal of Information Security and Applications Volume 48 (2019) 102371
Shibin Zhang, Jinyue Xia |
J. Inf. Secur. Appl. | 4 |
| 2019 | A CCA-secure multi-conditional proxy broadcast re-encryption scheme for cloud storage system
Yepeng Liu 0004, Yongjun Ren, Chunpeng Ge 0001, Jinyue Xia, Qirun Wang |
J. Inf. Secur. Appl. | 4 |
| 2019 | A Cluster Correlation power analysis against double blinding exponentiation
Wunan Wan, Shibing Zhang, Jinyue Xia |
J. Inf. Secur. Appl. | 4 |
| 2019 | A new user behavior evaluation method in online social network
Shibin Zhang, Jinyue Xia |
J. Inf. Secur. Appl. | 4 |
| 2018 | Instructor Perspectives on Comparative Heatmap Visualizations of Student Engagement with Lecture Video: Comparative Heatmap Visualizations of Student Video EngagementabstractThe use of online video in learning environments is prevalent -- serving in a variety of roles, such as multimedia textbook, video lecture, or medium for documenting student coursework. For instructors who employ video as a learning material, it is becoming increasingly important to gain a deeper understanding of the fit of video content across student cohorts, as well as the impact on student engagement, learning, and success. In order to better understand instructor interests and needs in this regard, we developed a learning analytics visualization tool that links data on student viewing and video interactions with student demographics and performance measures. Instructors can use the tool to generate and compare correlated heatmap visualizations representing student engagement across segments of the video. This paper describes an initial user study conducted with instructors in an HCI course context to understand how this kind of feedback can inform their use of video in the classroom. Results show that instructors find such feedback very useful across a variety of use cases. Jinyue Xia, David C. Wilson |
SIGCSE | 1 |
| 2018 | A Secure Multimedia Data Sharing Scheme for Wireless NetworkabstractA large number of wireless devices like WiFi cameras and 4G robots have been deployed in the rapidly growing wireless network such as Internet of Things. All of the devices (sensors) are collecting and analyzing multimedia data all the time while they are actively working, and it is also required to share data among these the sensors. Typically, the wireless data is transmitted through the network gateway or the cloud platforms. In such a wireless environment, if there is no appropriate protection to the data, it is easy to cause potential data leakage. In reality, the owner of the sensor might only want to share the multimedia data stored in the sensor with a trusted third party (e.g., a family member or a coworker) through an internet gateway or the cloud platform. Ideally, the gateway or the cloud platform in the wireless network should transform one user’s encrypted data (wireless multimedia data) directly into another ciphertext under a set of new users (e.g., a trusted third party) without accessing the user’s plaintext data. In this work, a new secure notion called fuzzy-conditional proxy broadcast re-encryption (FC-PBRE) is presented to address the concern. In a FC-PBRE scheme, the proxy (the gateway or cloud server) uses a broadcast re-encryption key to re-encrypt the encrypted wireless multimedia data which can be decrypted by a set of delegatees if and only if the broadcast key’s conditional set W is close to the conditional set W′ of the ciphertext. With the FC-PBRE scheme, the wireless multimedia data is not disclosed and cannot be learnt by the proxy (the gateway or cloud server). In this paper, we first present the definition of security against chosen-ciphertext attacks for FC-PBRE. Second, we propose an efficient fuzzy-conditional proxy broadcast re-encryption scheme. Third, we prove that our FC-PBRE scheme is CCA-secure in the random oracle model based on the Decisional nBDHE assumption. Liming Fang 0001, Liang Liu 0006, Jinyue Xia, Maosheng Sun |
Secur. Commun. Networks | 3 |
| 2018 | A Source Hiding Identity-Based Proxy Reencryption Scheme for Wireless Sensor NetworkabstractWireless sensor network (WSN), which extends the typical Internet environment to Internet of Things, has been deployed in various environments such as safety monitoring, intelligent transportation, and smart home. In a WSN, encryption is typically used to protect data that are stored in wireless devices. However some features like data sharing can be affected if the traditional encryption is used. A secure mechanism should support a gateway of the network to directly convert a user’s encrypted data (encrypted pollution data) to a new user’s encryption without exposing the underlying plaintext data during the whole sharing phase. In this work, a new source hiding identity-based proxy reencryption scheme (SHIB-PRE) is proposed to deal with the issue. The proposed SHIB-PRE scheme supports a proxy (gateway or cloud server) to transform a user’s encrypted date to a new user’s ciphertext as long as the proxy has the proxy reencryption key. In SHIB-PRE, the encrypted pollution data is kept secure from the proxy and the relationship between a source ciphertext and a reencrypted ciphertext is concealed from the outside eavesdropper. In this paper, we give an introduction to the definition of a source hiding identity-based proxy reencryption and its chosen plaintext security model. Further, a concrete construction will be presented and proven chosen plaintext secure under the q-DDHE assumption in the standard model. Jinyue Xia, Aaron Wu |
Secur. Commun. Networks | 2 |