VLDB 2026 Research / reviewers in the wild / expert
Jia-Ning Luo
dblp:32/5553
· DBLP profile ↗
8ranked-venue papers
5as first author
3since 2021 · last 2022
0000-0003-1395-5810ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 3 · 1 first-author · 2 since 2021Systems, architecture and hardware · 2 · 1 first-author · 1 since 2021Graphics, computer vision, multimedia, augmented reality and games · 2 · 2 first-authorComputer networks · 1 · 1 first-author
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2022 | A Blockchain-Based Secure Radio Frequency Identification Ownership Transfer ProtocolabstractSupply chain management (SCM) governance is the streamline of the IoT product life cycle from its production to delivery. Integrating blockchain with supply chain management is essential to ensure end-to-end tracking, trustiness between manufacturers and customers, fraud and counterfeit elimination, and customizing administrative costs and paperwork. This paper proposes an RFID ownership transfer protocol with the help of zk-SNARKs (Zero Knowledge-Succinct Noninteractive Arguments of Knowledge) using Ethereum blockchain. When the owner performs RFID transfer, the transferred information will be recorded on the blockchain using smart contracts. When using a smart contract to transfer ownership on the Ethereum blockchain, because the content on the blockchain will not be tampered with, all accounts in the Ethereum can view the transfer results and verify them. The privacy of the supply chain is attained by generating the proof of product code via zk-SNARKs algorithm. This algorithm also enhances the scalability of the supply chain system by creating a trusted setup in off-chain mode. Vijayalakshmi Murugesan, Mercy Shalinie Selvaraj, Ming-Hour Yang, Shou-Chuan Lai, Jia-Ning Luo |
Secur. Commun. Networks | 5 |
| 2021 | A Provably Secure Authentication and Key Agreement Protocol in Cloud-Based Smart Healthcare EnvironmentsabstractThe wide applications of the Internet of Things and cloud computing technologies have driven the development of many industries. With the improvement of living standards, health has become the top priority of people’s attention. The emergence of the wireless body area network (WBAN) enables people to master their physical condition all the time and make it more convenient for patients and doctors to communicate with each other. Doctors can provide real-time online treatment with cloud-based smart healthcare environments for patients. In this process, patients, health records, and doctors need to maintain security and privacy. Recently, Kumari et al. proposed a secure framework for the smart medical system. However, we found that their framework cannot provide the anonymity of patients and doctors, data confidentiality, and patient unlinkability and also is subject to impersonation attacks and desynchronization attacks. In order to ensure the security and privacy of patients and doctors, we propose an authentication and key exchange protocol in cloud-based smart healthcare environments. Formal and informal security analyses, as well as performance analysis, demonstrated that our protocol is suitable for these environments. Tsu-Yang Wu, Lei Yang 0055, Jia-Ning Luo, Jimmy Ming-Tai Wu |
Secur. Commun. Networks | 3 |
| 2021 | Provably secure authentication key exchange scheme using fog nodes in vehicular ad hoc networks
Tsu-Yang Wu, Zhiyuan Lee, Lei Yang 0055, Jia-Ning Luo, Raylin Tso |
J. Supercomput. | 4 |
| 2019 | A geographic map-based middleware framework to obfuscate smart vehicles' locations
Jia-Ning Luo, Ming-Hour Yang, Kuo-Yu Tsai |
Multim. Tools Appl. | 1 |
| 2017 | Unchained Cellular Obfuscation Areas for Location Privacy in Continuous Location-Based Service QueriesabstractTo access location-based service (LBS) and query surrounding points of interest (POIs), smartphone users typically use built-in positioning functions of their phones when traveling at unfamiliar places. However, when a query is submitted, personal information may be leaked when they provide their real location. Current LBS privacy protection schemes fail to simultaneously consider real map conditions and continuous querying, and they cannot guarantee privacy protection when the obfuscation algorithm is known. To provide users with secure and effective LBSs, we developed an unchained regional privacy protection method that combines query logs and chained cellular obfuscation areas. It adopts a multiuser anonymizer architecture to prevent attackers from predicting user travel routes by using background information derived from maps (e.g., traffic speed limits). The proposed scheme is completely transparent to users when performing continuous location-based queries, and it combines the method with actual road maps to generate unchained obfuscation areas that conceal the actual locations of users. In addition to using a caching approach to enhance performance, the proposed scheme also considers popular tourist POIs to enhance the cache data hit ratio and query performance. Jia-Ning Luo, Ming-Hour Yang |
Wirel. Commun. Mob. Comput. | 1 |
| 2016 | A Mobile Device-Based Antishoulder-Surfing Identity Authentication Mechanism
Jia-Ning Luo, Ming-Hour Yang, Cho-Luen Tsai |
NSS | 1 |
| 2016 | A mobile authentication system resists to shoulder-surfing attacks
Jia-Ning Luo, Ming-Hour Yang |
Multim. Tools Appl. | 1 |
| 2014 | An anonymous e-rental protocol based on ID-based cryptography and NFC
Jia-Ning Luo, Ming-Hour Yang |
J. Supercomput. | 1 |