VLDB 2026 Research / reviewers in the wild / expert
Harris Niavis
dblp:122/1280
· DBLP profile ↗
4ranked-venue papers
2as first author
3since 2021 · last 2025
0000-0002-5941-9987ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 3 · 1 first-author · 3 since 2021Computer networks · 1 · 1 first-authorSoftware engineering, systems software and programming languages · 1 · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Generating efficient and semantic interoperable smart contracts for e-governanceabstractEfficiency and interoperability are essential for the evolution of secure and scalable e-governance systems. This paper presents a novel framework for interoperable smart contract generation that integrates semantic technologies, and Layer-2 blockchain scaling solutions to enhance interoperability, security, and efficiency in e-governance applications. Using zero-knowledge proofs for privacy-preserving transactions and self-sovereign identity mechanisms for decentralized authentication, the proposed architecture ensures trust and compliance with international standards. Initially applied to e-voting, this framework is adaptable to broader public services, fostering a transparent, cost-effective, and sustainable digital governance ecosystem. Sokratis Vavilis, Harris Niavis, George Misiakoulis, Panos Protopapas, Konstantinos Loupos |
ICBC | 2 |
| 2023 | An inclusive Lifecycle Approach for IoT Devices Trust and Identity ManagementabstractERATOSTHENES is an EC, co-funded, research project strongly considering modern security challenges in the domain of Internet of Things in mind of their huge penetration into our day to day lives. There are a series of recent challenges that recently have been converted into obstacles or risk points that could block the secure operation of IoT networks in all day to day activities, from home to office, to leisure and security. These include examples such as the highly increased number of connected devices (at all network levels) that are on top forming inhomogeneous networks and systems of systems. Different vendor characteristics further increase the attack surface that is expected to further rise in the upcoming years. Such, highly critical, characteristics, dramatically increase the needs for confidentiality access control, user and things’ privacy, devices’ trustworthiness and compliance that require lifecycle considerations. The ERATOSTHENES project orchestrates a novel distributed, automated, auditable, yet privacy-respectful, Trust and Identity Management Framework and Reference Architecture with the ultimate scope to dynamically and holistically manage IoT devices in a lifecycle approach, strengthening trust, identities, and resilience in the entire IoT ecosystem while supporting the enforcement of the NIS directive, GDPR and Cybersecurity Act. This publication describes the ERATOSTHENES technical concept and reference architecture as well as design considerations, architecture characteristics, connectivity and interoperability. Konstantinos Loupos, Harris Niavis, Fotis Michalopoulos, George Misiakoulis, Antonio F. Skarmeta, Jesús Garcia, Angel Palomares, Rustem Dautov, Francesca Giampaolo, Rosella Mancilla, Francesca Costantino, Dimitri Van Landuyt, Sam Michiels, Stefan More, Christos Xenakis, Michail Bampatsikos, Ilias Politis, Konstantinos Krilakis, Sokratis Vavilis |
ARES | 2 |
| 2022 | ConSenseIoT: A Consensus Algorithm for Secure and Scalable Blockchain in the IoT contextabstractData protection and privacy is a major concern in the Internet of Things (IoT) ecosystem, and the excessive use of IoT devices may risk the security of the network. Blockchain solutions are used to enhance the trustworthiness and eliminate the need for trusted third parties by providing mechanisms to reach consensus in a network of trustless participants. The consensus algorithms employed by blockchain architectures ensure the integrity of the data stored in the blockchain, the resiliency of the network and manage the security of devices. However, current solutions are compute intensive affecting the performance of the network and consuming much energy. In this work, we introduce a consensus algorithm for offering secure distributed consensus among IoT devices without affecting the performance of the network. The algorithm is inspired by existing solutions, employs decentralised identities, verifiable credentials and a decentralised trust management mechanism to guarantee security, privacy and trustworthiness of transactions. Finally, our algorithm combines technologies for operating in a distributed manner which favors the scalability and allow the effective integration in large scale networks. Harris Niavis, Konstantinos Loupos |
ARES | 1 |
| 2014 | Auction-based scheduling of wireless testbed resourcesabstractExperimentation in testbeds is gaining increasing ground as a necessary validation step for every theoretical study in communication networks. However, the first-come-first-served policy employed today by most testbeds does not ensure the fair and efficient utilization of their resources, which often lie idle. Ideally, every testbed should be utilized as much as possible and serve the most important requests. In this paper we introduce a novel resource scheduling mechanism for the wireless testbed NITOS. The proposed scheme is based on VCG auctions and includes an allocation and a pricing rule which induce the users to judiciously submit experiment requests. We prove theoretically and demonstrate numerically that this scheme ensures that the testbed resources (nodes and channels) are assigned to the users with the highest needs. Our mechanism can be incorporated in the next generation resource management systems for NITOS and similar testbeds. Harris Niavis, Kostas Choumas, George Iosifidis, Thanasis Korakis, Leandros Tassiulas |
WCNC | 1 |