VLDB 2026 Research / reviewers in the wild / expert
Nicolas Anciaux
dblp:00/1107
· DBLP profile ↗
32ranked-venue papers in the field
18as first author
8since 2021 · last 2025
0009-0003-7537-295XORCID · corroborated
Domains — venue-derived; a paper can count in several
Database Systems & Data Management · 29 (17 first)Information Retrieval & Web Search · 2 (1 first)Data Mining & Knowledge Discovery · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Enabling secure data-driven applications: an approach to personal data management using trusted execution environments
Robin Carpentier, Iulian Sandu Popa, Nicolas Anciaux |
Distributed Parallel Databases | 3 |
| 2025 | TELESAFE - Detecting Private/Work Boundary Crossings in Energy Consumption Trails in TeleworkabstractTeleworking has become a social gain following the COVID-19 lock-downs. In many professions, remote work is becoming a common practice, either at the employee's home or in a shared space nearby. However, this creates an implicit private/work-life tension as private activities may be carried out during work time and vice versa. Detecting boundary crossings is of outmost relevance - they serve as evidence of the workers' breaks and right to rest. However, this must be achieved without excessive surveillance. Existing activity recognition techniques either do not address the border crossing problem or require a priori training. To address this issue, this article proposes TELESAFE , a boundary crossing detector solution for teleworking. TELESAFE does not require any training nor instrumentation of the teleworker home and can be run locally in resource-constrained devices. To illustrate its suitability, it is applied on electric consumption trails so as to enable self and third-party assessment (e.g., work inspectors) on working conditions. Results on real-world datasets show a Fscore over 90% for identifying private activities involving one or more devices with usage patterns of varying lengths. Interestingly, TELESAFE outperforms Machine and Deep-Learning approaches in the most complex settings, without the burden of training. Haoying Zhang, Mariem Brahem, Nicolas Anciaux, Benjamin Nguyen, José María de Fuentes |
Proc. VLDB Endow. | 3 |
| 2024 | A new PET for Data Collection via Forms with Data Minimization, Full Accuracy and Informed ConsentabstractInternational audience Nicolas Anciaux, Sabine Frittella, Baptiste Joffroy, Benjamin Nguyen, Guillaume Scerri |
EDBT | 1 |
| 2024 | Nob-MIAs: Non-biased Membership Inference Attacks Assessment on Large Language Models with Ex-Post Dataset Construction
Cédric Eichler, Nathan Champeil, Nicolas Anciaux, Alexandra Bensamoun, Héber Hwang Arcolezi, José María de Fuentes |
WISE (3) | 3 |
| 2023 | Pushing Edge Computing one Step Further: Resilient and Privacy-Preserving Processing on Personal DevicesabstractCan we push Edge computing one step further?This demonstration paper proposes an answer to this question by leveraging the generalization of Trusted Execution Environments at the very edge of the network to enable resilient and privacy-preserving computation on personal devices.Based on preliminary published results, we show that this can drastically change the way distributed processing over personal data is conceived and achieved.The platform presented here demonstrates the pertinence of the approach through execution scenarios integrating heterogeneous secure personal devices. Ludovic Javet, Nicolas Anciaux, Luc Bouganim, Léo Lamoureux, Philippe Pucheral |
EDBT | 2 |
| 2022 | Local Personal Data Processing with Third Party Code and Bounded Leakage
Robin Carpentier, Iulian Sandu Popa, Nicolas Anciaux |
DATA | 3 |
| 2022 | An Extensive and Secure Personal Data Management System Using SGXabstractInternational audience Robin Carpentier, Floris Thiant, Iulian Sandu Popa, Nicolas Anciaux, Luc Bouganim |
EDBT | 4 |
| 2022 | Data Leakage Mitigation of User-Defined Functions on Secure Personal Data Management SystemsabstractPersonal Data Management Systems (PDMSs) arrive at a rapid pace providing individuals with appropriate tools to collect, manage and share their personal data. At the same time, the emergence of Trusted Execution Environments (TEEs) opens new perspectives in solving the critical and conflicting challenge of securing users’ data while enabling a rich ecosystem of data-driven applications. In this paper, we propose a PDMS architecture leveraging TEEs as a basis for security. Unlike existing solutions, our architecture allows for data processing extensiveness through the integration of any user-defined functions, albeit untrusted by the data owner. In this context, we focus on aggregate computations of large sets of database objects and provide a first study to mitigate the very large potential data leakage. We introduce the necessary security building blocks and show that an upper bound on data leakage can be guaranteed to the PDMS user. We then propose practical evaluation strategies ensuring that the potential data leakage remains minimal with a reasonable performance overhead. Finally, we validate our proposal with an Intel SGX-based PDMS implementation on real data sets. Robin Carpentier, Iulian Sandu Popa, Nicolas Anciaux |
SSDBM | 3 |
| 2019 | Personal Data Management Systems: The security and functionality standpoint
Nicolas Anciaux, Philippe Bonnet, Luc Bouganim, Benjamin Nguyen, Philippe Pucheral, Iulian Sandu Popa, Guillaume Scerri |
Inf. Syst. | 1 |
| 2019 | Personal Database Security and Trusted Execution Environments: A Tutorial at the CrossroadsabstractSmart disclosure initiatives and new regulations such as GDPR in the EU increase the interest for Personal Data Management Systems (PDMS) being provided to individuals to preserve their entire digital life. Consequently, the thorny issue of data security becomes more and more prominent, but highly differs from traditional privacy issues in outsourced corporate databases. Concurrently, the emergence of Trusted Execution Environments (TEE) changes the game in privacy-preserving data management with novel security models. This tutorial offers a global perspective of the current state of work at the confluence of these two rapidly growing areas. The goal is threefold: (1) review and categorize PDMS solutions and identify existing privacy threats and countermeasures; (2) review new security models capitalizing on TEEs and related privacy-preserving data management solutions relevant to the personal context; (3) discuss new challenges at the intersection of PDMS security and TEE-based data management. Nicolas Anciaux, Luc Bouganim, Philippe Pucheral, Iulian Sandu Popa, Guillaume Scerri |
Proc. VLDB Endow. | 1 |
| 2018 | Reconciling Privacy and Data Sharing in a Smart and Connected SurroundingabstractInternational audience Paul Tran-Van, Nicolas Anciaux, Philippe Pucheral |
EDBT | 2 |
| 2017 | SWYSWYK: A New Sharing Paradigm for the Personal Cloud
Paul Tran-Van, Nicolas Anciaux, Philippe Pucheral |
ADMA | 2 |
| 2017 | Supporting secure keyword search in the personal cloud
Saliha Lallali, Nicolas Anciaux, Iulian Sandu Popa, Philippe Pucheral |
Inf. Syst. | 2 |
| 2016 | Distributed Secure Search in the Personal CloudabstractInternational audience Thu Le, Nicolas Anciaux, Sébastien Guilloton, Saliha Lallali, Philippe Pucheral, Iulian Sandu Popa |
EDBT | 2 |
| 2015 | A Secure Search Engine for the Personal CloudabstractThe emerging Personal Could paradigm holds the promise of a Privacy-by-Design storage and computing platform where personal data remain under the individual's control while being shared by valuable applications. However, leaving the data management control to user's hands pushes the security issues to the user's platform. This demonstration presents a Secure Personal Cloud Platform relying on a query and access control engine embedded in a tamper resistant hardware device connected to the user's platform. The main difficulty lies in the design of an inverted document index and its related search and update algorithms capable of tackling the strong hardware constraints of these devices. We have implemented our engine on a real tamper resistant hardware device and present its capacity to regulate the access to a personal dataspace. The objective of this demonstration is to show (1) that secure hardware is a key enabler of the Personal Cloud paradigm and (2) that new embedded indexing and querying techniques can tackle the hardware constraints of tamper-resistant devices and provide scalable solutions for the Personal Cloud. Saliha Lallali, Nicolas Anciaux, Iulian Sandu Popa, Philippe Pucheral |
SIGMOD Conference | 2 |
| 2015 | A Scalable Search Engine for Mass Storage Smart ObjectsabstractThis paper presents a new embedded search engine designed for smart objects. Such devices are generally equipped with extremely low RAM and large Flash storage capacity. To tackle these conflicting hardware constraints, conventional search engines privilege either insertion or query scalability but cannot meet both requirements at the same time. Moreover, very few solutions support document deletions and updates in this context. In this paper, we introduce three design principles, namely Write-Once Partitioning, Linear Pipelining and Background Linear Merging, and show how they can be combined to produce an embedded search engine reconciling high insert/delete/update rate and query scalability. We have implemented our search engine on a development board having a hardware configuration representative for smart objects and have conducted extensive experiments using two representative datasets. The experimental results demonstrate the scalability of the approach and its superiority compared to state of the art methods. Nicolas Anciaux, Saliha Lallali, Iulian Sandu Popa, Philippe Pucheral |
Proc. VLDB Endow. | 1 |
| 2014 | Tutorial: Managing Personal Data with Strong Privacy GuaranteesabstractInternational audience Nicolas Anciaux, Benjamin Nguyen, Iulian Sandu Popa |
EDBT | 1 |
| 2014 | MILo-DB: a personal, secure and portable database machine
Nicolas Anciaux, Luc Bouganim, Philippe Pucheral, Yanli Guo, Lionel Le Folgoc, Shaoyi Yin |
Distributed Parallel Databases | 1 |
| 2014 | Folk-IS: Opportunistic Data Services in Least Developed CountriesabstractAccording to a wide range of studies, IT should become a key facilitator in establishing primary education, reducing mortality and supporting commercial initiatives in Least Developed Countries (LDCs). The main barrier to the development of IT services in these regions is not only the lack of communication facilities, but also the lack of consistent information systems, security procedures, economic and legal support, as well as political commitment. In this paper, we propose the vision of an infrastructureless data platform well suited for the development of innovative IT services in LDCs. We propose a participatory approach, where each individual implements a small subset of a complete information system thanks to highly secure, portable and low-cost personal devices as well as opportunistic networking, without the need of any form of infrastructure. We review the technical challenges that are specific to this approach. Nicolas Anciaux, Luc Bouganim, Thierry Delot, Sergio Ilarri, Leïla Kloul, Nathalie Mitton, Philippe Pucheral |
Proc. VLDB Endow. | 1 |
| 2013 | Trusted Cells: A Sea Change for Personal Data Services
Nicolas Anciaux, Philippe Bonnet, Luc Bouganim, Benjamin Nguyen, Iulian Sandu Popa, Philippe Pucheral |
CIDR | 1 |
| 2013 | MinExp-card: limiting data collection using a smart cardabstractOnline services such as social care, tax services, bank loans and many others, request individuals to fill in application forms with hundreds of private data items, in order to calibrate their offer. In practice, far too much data is requested, leading to over data disclosure. As shown in our previous works, avoiding this problem would (1) improve the privacy of the applicants and (2) decrease costs for service providers. We demonstrate here a prototype designed and implemented in partnership with the General Council of Yvelines District in France. The prototype targets forms used to calibrate social care for dependant people. To maintain the privacy of the decision process used to calibrate the social care, we propose a smartcard implementation. We will show that a 50% reduction of the items exposed in application forms can be achieved, explore the quality and scalability of our smartcard implementation, and demonstrate its scope. Nicolas Anciaux, Walid Bezza, Benjamin Nguyen, Michalis Vazirgiannis |
EDBT | 1 |
| 2013 | Personal Data Management with Secure Hardware: How to Keep Your Data at HandabstractWe review existing solutions for personal data management, present a functional architecture for such decentralized alternatives, expose recent techniques dealing with embedded data management and global query processing in this architecture, and conclude by presenting existing and future implementations. Nicolas Anciaux, Benjamin Nguyen, Iulian Sandu Popa |
MDM (2) | 1 |
| 2010 | Pluggable personal data serversabstractAn increasing amount of personal data is automatically gathered on servers by administrations, hospitals and private companies while several security surveys highlight the failure of database servers to keep confidential data really private. The advent of powerful secure tokens, combining the security of smart card microcontrollers with the storage capacity of NAND Flash chips, introduces a credible alternative to the systematic centralization of personal data. By embedding a full-fledged database server in such device, an individual can now store her personal data in her own secure token, kept under her control, and never disclose in clear her private data to the outside untrusted world. This demonstration shows the benefit of the proposed approach in terms of privacy protection and pervasiveness through a healthcare scenario. This scenario is extracted from a field experiment where medical folders embedded in secure tokens are used to improve the coordination of medical care at home for elderly people. The demonstration also highlights interesting features of the embedded DBMS engine introduced to tackle the secure token's strong hardware constraints. Nicolas Anciaux, Luc Bouganim, Yanli Guo, Philippe Pucheral, Jean-Jacques Vandewalle, Shaoyi Yin |
SIGMOD Conference | 1 |
| 2010 | Secure Personal Data Servers: a Vision PaperabstractAn increasing amount of personal data is automatically gathered and stored on servers by administrations, hospitals, insurance companies, etc. Citizen themselves often count on internet companies to store their data and make them reliable and highly available through the internet. However, these benefits must be weighed against privacy risks incurred by centralization. This paper suggests a radically different way of considering the management of personal data. It builds upon the emergence of new portable and secure devices combining the security of smart cards and the storage capacity of NAND Flash chips. By embedding a full-fledged Personal Data Server in such devices, user control of how her sensitive data is shared by others (by whom, for how long, according to which rule, for which purpose) can be fully reestablished and convincingly enforced. To give sense to this vision, Personal Data Servers must be able to interoperate with external servers and must provide traditional database services like durability, availability, query facilities, transactions. This paper proposes an initial design for the Personal Data Server approach, identifies the main technical challenges associated with it and sketches preliminary solutions. We expect that this paper will open exciting perspectives for future database research. Tristan Allard, Nicolas Anciaux, Luc Bouganim, Yanli Guo, Lionel Le Folgoc, Benjamin Nguyen, Philippe Pucheral, Indrajit Ray, Indrakshi Ray, Shaoyi Yin |
Proc. VLDB Endow. | 2 |
| 2009 | Revelation on demand
Nicolas Anciaux, Mehdi Benzine, Luc Bouganim, Philippe Pucheral, Dennis E. Shasha |
Distributed Parallel Databases | 1 |
| 2008 | Data degradation: making private data less sensitive over timeabstractTrail disclosure is the leakage of privacy sensitive data, resulting from negligence, attack or abusive scrutinization or usage of personal digital trails. To prevent trail disclosure, data degradation is proposed as an alternative to the limited retention principle. Data degradation is based on the assumption that long lasting purposes can often be satisfied with a less accurate, and therefore less sensi-tive, version of the data. Data will be progressively degraded such that it still serves application purposes, while decreasing accuracy and thus privacy sensitivity. Nicolas Anciaux, Luc Bouganim, Harold van Heerde, Philippe Pucheral, Peter M. G. Apers |
CIKM | 1 |
| 2008 | InstantDB: Enforcing Timely Degradation of Sensitive DataabstractPeople cannot prevent personal information from being collected by various actors. Several security measures are implemented on servers to minimize the possibility of a privacy violation. Unfortunately, even the most well defended servers are subject to attacks and however much one trusts a hosting organism/company, such trust does not last forever. We propose a simple and practical degradation model where sensitive data undergoes a progressive and irreversible degradation from an accurate state at collection time, to intermediate but still informative fuzzy states, to complete disappearance. We introduce the data degradation model and identify related technical challenges and open issues. Nicolas Anciaux, Luc Bouganim, Harold van Heerde, Philippe Pucheral, Peter M. G. Apers |
ICDE | 1 |
| 2008 | DiSC: Benchmarking Secure Chip DBMSabstractAbstract—Secure chips, e.g., present in smart cards, USB dongles, i-buttons, are now ubiquitous in applications with strong security requirements. Moreover, they require embedded data management techniques. However, secure chips have severe hardware constraints, which make traditional database techniques irrelevant. The main problem faced by secure chip DBMS designers is to be able to assess various design choices and trade-offs for different applications. Our solution is to use a benchmark for secure chip DBMS in order to 1) compare different database techniques, 2) predict the limits of on-chip applications, and 3) provide codesign hints. In this paper, we propose Data management in Secure Chip (DiSC), a benchmark that reaches these three objectives. This work benefits from our long experience in developing and tuning data management techniques for the smart card. To validate DiSC, we compare the behavior of candidate data management techniques using a cycle-accurate smart-card simulator. Furthermore, we show the applicability of DiSC to future designs involving new hardware platforms and new database techniques. Nicolas Anciaux, Luc Bouganim, Philippe Pucheral, Patrick Valduriez |
IEEE Trans. Knowl. Data Eng. | 1 |
| 2007 | GhostDB: querying visible and hidden data without leaksabstractImagine that you have been entrusted with private data, such as corporate product information, sensitive government information, or symptom and treatment information about hospital patients. You may want to issue queries whose result will combine private and public data, but private data must not be revealed. GhostDB is an architecture and system to achieve this. You carry private data in a smart USB key (a large Flash persistent store combined with a tamper and snoop-resistant CPU and small RAM). When the key is plugged in, you can issue queries that link private and public data and be sure that the only information revealed to a potential spy is which queries you pose. Queries linking public and private data entail novel distributed processing techniques on extremely unequal devices (standard computer and smart USB key). This paper presents the basic framework to make this all work intuitively and efficiently. Nicolas Anciaux, Mehdi Benzine, Luc Bouganim, Philippe Pucheral, Dennis E. Shasha |
SIGMOD Conference | 1 |
| 2007 | GhostDB: Hiding Data from Prying Eyes
Christophe Salperwyck, Nicolas Anciaux, Mehdi Benzine, Luc Bouganim, Philippe Pucheral, Dennis E. Shasha |
VLDB | 2 |
| 2003 | Memory Requirements for Query Execution in Highly Constrained Devices
Nicolas Anciaux, Luc Bouganim, Philippe Pucheral |
VLDB | 1 |
| 2001 | PicoDBMS: Validation and Experience
Nicolas Anciaux, Christophe Bobineau, Luc Bouganim, Philippe Pucheral, Patrick Valduriez |
VLDB | 1 |