EDBT 2026 Demo / reviewers in the wild / expert
Christian Killer
dblp:180/8572
· DBLP profile ↗
12ranked-venue papers
3as first author
10since 2021 · last 2024
0000-0001-7943-1185ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 9 · 2 first-author · 8 since 2021Security and privacy · 2 · 1 first-author · 2 since 2021Software engineering, systems software and programming languages · 2 · 1 first-author · 2 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2024 | Performance Analysis of Decentralized Physical Infrastructure Networks and Centralized CloudsabstractThe advent of Decentralized Physical Infrastructure Networks (DePIN) represents a shift in the digital infrastructure of today’s Internet. While Centralized Service Providers (CSP) monopolize cloud computing, DePINs aim to enhance data sovereignty and confidentiality and increase resilience against a single point of failure. Due to the novelty of the emerging field of DePIN, this work focuses on the potential of DePINs to disrupt traditional centralized architectures by taking advantage of the Internet of Things (IoT) devices and crypto-economic design in combination with blockchains. This combination yields Acurast, a more distributed, resilient, and user-centric physical infrastructure deployment. Through comparative analysis with centralized systems, particularly in serverless computing contexts, this work seeks to lay the first steps in scientifically evaluating DePINs and quantitatively comparing them in terms of efficiency and effectiveness in real-world applications. The findings suggest DePINs’ potential to (i) reduce trust assumptions and physically decentralized infrastructure, (ii) increase efficiency and performance simultaneously while improving the computation’s (iii) confidentiality and verifiability. Jan von der Assen, Christian Killer, Alessandro De Carli, Burkhard Stiller |
ICBC | 2 |
| 2022 | ProvotuMN: Decentralized, Mix-Net-based, and Receipt-free Voting SystemabstractRecent years saw an increase in voting systems using public permissionless blockchains. Although public blockchains offer transparency and immutability, permissioned consensus is better suited for voting systems’ requirements, because an initial level of trust in authorities is always required. Hence, a permissioned Distributed Ledger (DL) immutably storing the voting system’s audit trail satisfies demands measurably.ProvotuMN 3.0 is a decentralized and receipt-Free (RF) voting system based on an end-to-end verifiable Re-Encryption Mixnet (RMN). RMNs allow for flexible votes and elections and decouple the ballot structure from the cryptographic voting protocol. Thus, ProvotuMN decentralizes trust (i) through the use of cryptographic shuffles and Non-Interactive Zero-Knowledge Proofs (NIZKP) in an RMN executed among DL nodes, (ii) by employing a distributed key generation for election keys, and (iii) by offering a decentralized re-encryption service assuring RF. Performance evaluations performed indicate that the voting scheme is scalable for large-scale voting. Christian Killer, Moritz Eck, Bruno Rodrigues 0001, Jan von der Assen, Roger Staubli, Burkhard Stiller |
ICBC | 1 |
| 2022 | Blockchain-Based Voting Considered Harmful?abstractBlockchains (BC) and Distributed Ledgers (DL) offer favorable properties, especially immutability and decentralization, which are suitable for voting systems’ Bulletin Boards (BB). In recent years, an influx of BC-based voting systems have been observed. Distributing trust among multiple trustees is a crucial reason to adopt BCs and DLs in voting systems. The practical deployment must be decentralized, too, and not just done through virtualizing interconnected systems. As discussed widely, adopting a BC or DL can incur threats to a system that assumed a trusted and centralized Public Bulletin Board (PBB). Therefore, the exploitation of BCs or DLs requires careful consideration of cryptographic mechanisms and the overall system design, as well as the adversary model. Besides these operational necessities, the long-term privacy of ballots is essential. Thus, the key question investigated in this article is: Can BC, and DL-based voting systems be considered harmful? Hence, first (i) requirements of BC-based voting systems are provided, followed by (ii) terminology definitions, and (iii) complemented by the design and implementation of a fully decentralized voting system: Æternum, which achieves Unconditional Privacy (UP) and neither relies on computational hardness assumptions nor on a trusted Trusted Third Party (TTP). Achieving UP is crucial because future adversaries may be able to break hardness assumptions. Æternum does not present a Single-Point-of-Failure (SPoF) either, since (i) the PBB in use is based on a permissioned DL, and (ii) the final tally and proofs can be verified by anyone, without requiring trust in any authority. Christian Killer, Bruno Rodrigues 0001, Eder J. Scheid, Muriel Figueredo Franco, Burkhard Stiller |
IEEE Trans. Netw. Serv. Manag. | 1 |
| 2022 | On the Employment of Machine Learning in the Blockchain Selection ProcessabstractGiven the growing increase in the number of blockchain (BC) platforms, cryptocurrencies, and tokens, non-technical individuals face a complex question when selecting a BC that meets their requirements (e.g., performance or security). In addition, current approaches that aid such a selection process present drawbacks (e.g., require specific BC knowledge or are not automated and scalable), which hinders the decision process even further. Fortunately, techniques such as Machine Learning (ML) allow the creation of selection models without human interaction by identifying the BC features that match the requirements provided by the user in an automated and flexible manner. Thus, this work presents the design and implementation of an ML-based BC selection approach that employs five ML models to select the most suitable BC given user requirements (e.g., BC popularity, fast block inclusion, or Smart Contract - SC support). The approach follows an ML-specific data flow and defines a novel equation to quantify the popularity of a BC. Furthermore, it details the models’ accuracy and functionality in two distinct use cases, which shows their good accuracy (>85%). Finally, discussions on (a) the ML usefulness, (b) advantages over rule-based systems, and (c) the most relevant features for the BC selection are presented. Eder J. Scheid, Ratanak Hy, Muriel Figueredo Franco, Christian Killer, Burkhard Stiller |
IEEE Trans. Netw. Serv. Manag. | 4 |
| 2021 | BluePIL: a Bluetooth-based PassIve Localization Method
Bruno Rodrigues 0001, Cyrill Halter, Muriel Figueredo Franco, Eder J. Scheid, Christian Killer, Burkhard Stiller |
IM | 5 |
| 2021 | Digital Mobile Onboarding in Switzerland - a Hands-on Experience
Nicolas Gordillo, Bruno Rodrigues 0001, Christian Killer, Thomas Bocek, Burkhard Stiller |
IM | 3 |
| 2021 | LaFlector: a Privacy-preserving LiDAR-based Approach for Accurate Indoor TrackingabstractLight Detection and Ranging (LiDAR) is used in various applications, from mapping the environment’s topography to self-driving vehicles. Among such applications, the use of LiDAR for indoor tracking and quantifying visitors’ interest (and ensuring safe distancing) is still not widely explored. Technologies based on wireless signals and video captures are typically used for indoor tracking, but they deficits concerning the lack of accuracy of captured signals or the lack of user privacy in the case of traditional surveillance cameras. Despite introducing tracking challenges inherent in the detection based on light reflection, LiDAR-based approaches represent a relatively low-cost solution for accurate indoor tracking. Thus, this paper presents LaFlector, a LiDAR-based indoor tracking system introducing tracking heuristics capable of detecting, classifying, and tracking several objects simultaneously, which are recorded and dynamically displayed in a 2D coordinate system. LaFlector was evaluated based on a low-cost 2D LiDAR hardware (Slamtec Mapper M1M1) and capable of detecting moving objects with high precision, showing in practice that a LiDAR-based can be used to track visitors’ interest and count the number of moving objects. Bruno Rodrigues 0001, Lukas Müller, Eder J. Scheid, Muriel Figueredo Franco, Christian Killer, Burkhard Stiller |
LCN | 5 |
| 2021 | SecGrid: a Visual System for the Analysis and ML-based Classification of Cyberattack TrafficabstractDue to the increasing number of cyberattacks and respective predictions for the upcoming years with even larger numbers of occurrences, companies are becoming aware not only that the digitization of their businesses is essential, but also that the adoption of efficient cybersecurity strategies is crucial. Therefore, approaches for a better understanding and analysis of cybersecurity are essential.Thus, SecGrid, a Machine Learning (ML) empowered platform for analyzing, classification, and visualization of cyberattacks is introduced. SecGrid implements an extensible set of miners to analyze information from network traces to provide insightful visualizations of malicious traffic given and to classify automatically different types of cyberattacks by using supervised ML. Experiments conducted show high overall usability, scalability in terms of the capacity of the platform to extract information from large files, and high performance and accuracy during the classification of cyberattacks. Muriel Figueredo Franco, Jan von der Assen, Luc Boillat, Christian Killer, Bruno Rodrigues 0001, Eder J. Scheid, Lisandro Z. Granville, Burkhard Stiller |
LCN | 4 |
| 2021 | Poster: DDoSGrid: a Platform for the Post-mortem Analysis and Visualization of DDoS AttacksabstractDistributed Denial-of-Service (DDoS) attacks remain one of the top reasons for business disruption and financial losses. Although mitigation solutions are available on the market, there is still a need for approaches that help network operators understand attack characteristics and behaviors, resulting in better planning of companies' cybersecurity strategies. This paper introduces DDoSGrid, a platform for the analysis and visualization of DDoS attacks. DDoSGrid implements an extensible set of miners to extract, process, and analyze information from network traces (i.e., PCAP files) to provide insightful visualizations for a better understanding and in-depth analysis of DDoS attacks in different scenarios. A case study was performed using an HTTP flood attack scenario to evaluate the feasibility of the approach. DDoSGrid enables real-world DDoS scenarios' analysis, providing an intuitive interface integrated with extensible insightful visualizations and data miners. Muriel Figueredo Franco, Jan von der Assen, Luc Boillat, Christian Killer, Bruno Rodrigues 0001, Eder J. Scheid, Lisandro Z. Granville, Burkhard Stiller |
Networking | 4 |
| 2021 | ASIMOV: a Fully Passive WiFi Device TrackingabstractMobile devices expose information about their hardware and manufacturer while searching for available WiFi networks via a Media Access Control (MAC) protocol. Thus, to protect the users' privacy and prevent MAC address tracking, manufacturers typically provide anonymity through MAC randomization techniques by randomly and periodically modifying the MAC address. This paper presents the ASIMOV tracking approach, which shows through the correlation of randomized information concerning the displacement of devices in space-time dimensions that it is possible to gain insights into identifiable device information. The proposed system is entirely passive and uses a combined Received Signal Strength Indicator (RSSI) value-based localization and the Information Elements (IE) transmitted in every IEEE 802.11 probe request frame. Rafael Hengen Ribeiro, Bruno Rodrigues 0001, Christian Killer, Lenz Baumann, Muriel Figueredo Franco, Eder J. Scheid, Burkhard Stiller |
Networking | 3 |
| 2020 | SecBot: a Business-Driven Conversational Agent for Cybersecurity Planning and ManagementabstractBusinesses were moving during the past decades to-ward full digital models, which made companies face new threats and cyberattacks affecting their services and, consequently, their profits. To avoid negative impacts, companies' investments in cybersecurity are increasing considerably. However, Small and Medium-sized Enterprises (SMEs) operate on small budgets, minimal technical expertise, and few personnel to address cybersecurity threats. In order to address such challenges, it is essential to promote novel approaches that can intuitively present cybersecurity-related technical information.This paper introduces SecBot, a cybersecurity-driven conversational agent (i.e., chatbot) for the support of cybersecurity planning and management. SecBot applies concepts of neural networks and Natural Language Processing (NLP), to interact and extract information from a conversation. SecBot can (a) identify cyberattacks based on related symptoms, (b) indicate solutions and configurations according to business demands, and (c) provide insightful information for the decision on cybersecurity investments and risks. A formal description had been developed to describe states, transitions, a language, and a Proof-of-Concept (PoC) implementation. A case study and a performance evaluation were conducted to provide evidence of the proposed solution's feasibility and accuracy. Muriel Figueredo Franco, Bruno Rodrigues 0001, Eder J. Scheid, Arthur Selle Jacobs, Christian Killer, Lisandro Z. Granville, Burkhard Stiller |
CNSM | 5 |
| 2020 | Provotum: A Blockchain-based and End-to-end Verifiable Remote Electronic Voting SystemabstractWhile the existence of Public Bulletin Boards (PBB) is often formulated as an assumption in related work on Remote Electronic Voting (REV) systems, this work here on Provotum focuses on the practical design and architecture of such a PBB, including its distributed execution. Further, Provotum leverages a public permissioned Blockchain (BC) as a PBB, where only authorized entities can sign blocks, while the general public can verify all BC data. Therefore, Provotum defines a new and fully decentralized BC-based REV system, which deploys a permissioned BC as a PBB and allows for the explicit distribution of trust across different permissioned BC nodes. Provotum is operated in a fully distributed fashion by using Smart Contracts (SC), Distributed Key Generation (DKG), Homomorphic Encryption (HE), and Cooperative Decryption (CD), as well as employing client-side encryption, which enables ballot secrecy, while the BC forms an audit trail, enabling public and End-to-end Verifiability (E2E-V). Christian Killer, Bruno Rodrigues 0001, Eder J. Scheid, Muriel Figueredo Franco, Moritz Eck, Nik Zaugg, Alex Scheitlin, Burkhard Stiller |
LCN | 1 |