Prof. Dr.-Ing. Dr. h.c. Frank H. P. Fitzek, IEEE Fellow, holds the Deutsche Telekom Chair for Communication Networks at the Dresden University of Technology (TUD) and leads a research team of more than 100 scientists. His research focuses on cutting-edge topics such as 5G/6G communication systems, quantum and molecular communication, novel computing approaches, human-machine interaction, and information theory.
Prof. Fitzek coordinates two large interdisciplinary research projects: the Cluster of Excellence “Centre for Tactile Internet with Human-in-the-Loop” (CeTI) and the BMBF-funded initiative “6G-life”, a cooperation between TU Dresden and TU Munich. In addition, he co-leads the joint Saxon-Bavarian research initiative “gAIn”, which explores innovative computer architectures for artificial intelligence.
His team works closely with leading academic institutions such as the Massachusetts Institute of Technology (MIT), Aalborg University (AAU), Technische Universität München (TUM), Budapest University of Technology and Economics (BUTE), NorthEastern University, and EURECOM. Industry partnerships include Deutsche Telekom AG and Ericsson.
Prof. Fitzek’s pioneering work in MIMO MDC earned him the YRP Award in 2005 and the Danish Young Elite Researcher Award. For his innovative contributions to cooperative networks, he received the NOKIA Champion Award from 2007 to 2011 and the Nokia Achievement Award in 2008. In 2011, he received the prestigious SAPERE AUDE research grant, followed by the Vodafone Innovation Prize in 2012. In 2015, he was awarded the degree of Doctor Honoris Causa by BUTE.
Prof. Fitzek has co-founded several successful startups in the fields of communications, computing, robotics, AI, human-machine interaction, and quantum technologies.
Academic Appointments
TU Dresden, Germany
10/2014 – present
Professor, Area Chair – Communication Networks
5G Lab Germany Coordinator 5Glab.de
Aalborg University, Denmark
12/2003 – 09/2014
Professor, Electronic Systems
Head of Mobile Devices and Future Vision Group
University of Ferrara, Italy
2002–2003
Adjunct Professor, Wireless Networking,
Group of Professor Michele Zorzi
Visiting Appointments
MIT – Massachusetts Institute of Technology, USA
2009,2010
Visiting Professor Wireless and Cooperative Networks,
Group of Professor Muriel Medard
VTT Research Center Oulu, Finland
2007
Visiting Professor, Cognitve and Cooperative Wireless Networks
Group of Dr. Marcos Katz
ASU – Arizona State University, USA
2000,2002
Visiting student, Multimedia Networking
Group of Martin Reisslein
Education
Technical University of Berlin, Germany
1997–2002
supervisor Professor Adam Wolisz
Degree: Dr.-Ing. in Electrical Engineering
RWTH Aachen, Germany
1992–1997
supervisor Professor Bernhard Walke
Degree: Dipl.-Ing. in Electrical Engineering
Xu, Zhihan; Cabrera, Juan A.; Fitzek, Frank H. P.
Function-Aligned Nonuniform Quantization Graph Coloring for Distributed Functional Compression Proceedings Article
In: IEEE International Conference on Communications: Communication Theory (ICC - CT), pp. 5.9, Glasgow, United Kingdom, 2026.
@inproceedings{Xu0526:Function,
title = {Function-Aligned Nonuniform Quantization Graph Coloring for Distributed Functional Compression},
author = {Zhihan Xu and Juan A. Cabrera and Frank H. P. Fitzek},
year = {2026},
date = {2026-05-24},
urldate = {2026-05-24},
booktitle = {IEEE International Conference on Communications: Communication Theory (ICC - CT)},
pages = {5.9},
address = {Glasgow, United Kingdom},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Zheng, Ruifeng; Zhou, Pengjie; Hofmann, Pit; Cabrera, Juan A.; Fitzek, Frank H. P.
System Modeling of Microfluidic Molecular Communication: A Markov Approach Proceedings Article
In: IEEE International Conference on Communications (ICC), Glasgow, United Kingdom, 2026.
@inproceedings{Zheng0526:System,
title = {System Modeling of Microfluidic Molecular Communication: A Markov Approach},
author = {Ruifeng Zheng and Pengjie Zhou and Pit Hofmann and Juan A. Cabrera and Frank H. P. Fitzek},
year = {2026},
date = {2026-05-24},
urldate = {2026-05-01},
booktitle = {IEEE International Conference on Communications (ICC)},
address = {Glasgow, United Kingdom},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Tunc, Hilal Sultan Duranoglu; Halder, Joy; Habibie, Muhammad Idham; Arar, Bassem; Bassoli, Riccardo; Fettweis, Gerhard P.; Fitzek, Frank H. P.
Routing in Bufferless Quantum Networks Proceedings Article
In: IEEE INFOCOM WKSHPS: QuNAP 2026: Quantum Networked Applications and Protocols (INFOCOM QuNAP 2026), pp. 5.97, Tokyo, Japan, 2026.
@inproceedings{Dura2605:Routing,
title = {Routing in Bufferless Quantum Networks},
author = {Hilal Sultan Duranoglu Tunc and Joy Halder and Muhammad Idham Habibie and Bassem Arar and Riccardo Bassoli and Gerhard P. Fettweis and Frank H. P. Fitzek},
year = {2026},
date = {2026-05-01},
booktitle = {IEEE INFOCOM WKSHPS: QuNAP 2026: Quantum Networked Applications and
Protocols (INFOCOM QuNAP 2026)},
pages = {5.97},
address = {Tokyo, Japan},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Bayleyegn, Abebu Ademe; Ghadimi, Milad; Habibie, Muhammad Idham; Bassoli, Riccardo; Fitzek, Frank H. P.
Faking Bell Violations with Classical Light and Side-Channel Attacks Proceedings Article
In: IEEE INFOCOM WKSHPS: QuNAP 2026: Quantum Networked Applications and Protocols (INFOCOM QuNAP 2026), pp. 5.84, Tokyo, Japan, 2026.
@inproceedings{Bayl2605:Faking,
title = {Faking Bell Violations with Classical Light and Side-Channel Attacks},
author = {Abebu Ademe Bayleyegn and Milad Ghadimi and Muhammad Idham Habibie and Riccardo Bassoli and Frank H. P. Fitzek},
year = {2026},
date = {2026-05-01},
booktitle = {IEEE INFOCOM WKSHPS: QuNAP 2026: Quantum Networked Applications and Protocols (INFOCOM QuNAP 2026)},
pages = {5.84},
address = {Tokyo, Japan},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Attawna, Mahdi; Hernandez-Gobertti, Fernando; Doan, Tung V.; Nguyen, Giang T.; Gomez-Barquero, David; Fitzek, Frank H. P.
SliceEdge: Edge-Based Network Slicing for Multimodal Tactile Internet Applications in 5G/6G Proceedings Article
In: IEEE International Conference on Communications (ICC 2026), Workshop WS04: 5th Workshop on Sustainable and Resilient Industrial Networks, Glasgow, Scotland, UK, 2026.
@inproceedings{Attawna2026:SliceEdge,
title = {SliceEdge: Edge-Based Network Slicing for Multimodal Tactile Internet Applications in 5G/6G},
author = {Mahdi Attawna and Fernando Hernandez-Gobertti and Tung V. Doan and Giang T. Nguyen and David Gomez-Barquero and Frank H. P. Fitzek},
year = {2026},
date = {2026-05-01},
booktitle = {IEEE International Conference on Communications (ICC 2026), Workshop WS04: 5th Workshop on Sustainable and Resilient Industrial Networks},
address = {Glasgow, Scotland, UK},
keywords = {},
pubstate = {accepted},
tppubtype = {inproceedings}
}
Scheinert, Tobias; Danz, Lucas; Nazari, Hosein K.; Senk, Stefan; Liu, How-Hang; Seidel, Mauri; Nguyen, Giang; Fitzek, Frank H. P.
Time-Slot-Aware Transmission in 5G TDD for Edge-Controlled Robotics Proceedings Article
In: IEEE International Conference on Communications (ICC 2026), Workshop WS-05: 6G Connected Robotics, Glasgow, Scotland, UK, 2026.
@inproceedings{Scheinert2026:TSA5GTDD,
title = {Time-Slot-Aware Transmission in 5G TDD for Edge-Controlled Robotics},
author = {Tobias Scheinert and Lucas Danz and Hosein K. Nazari and Stefan Senk and How-Hang Liu and Mauri Seidel and Giang Nguyen and Frank H. P. Fitzek},
year = {2026},
date = {2026-05-01},
urldate = {2026-05-01},
booktitle = {IEEE International Conference on Communications (ICC 2026), Workshop WS-05: 6G Connected Robotics},
address = {Glasgow, Scotland, UK},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Raman, Vignesh; Bassoli, Riccardo; Fitzek, Frank H. P.
Quantum Electromagnetic Curvature Resilience: An Information-Geometry Metric for Wireless Quantum Networks Proceedings Article
In: 20th European Conference on Antennas and Propagation (EuCAP), pp. 5, Dublin, Ireland, 2026.
@inproceedings{Rama2026:Quantum,
title = {Quantum Electromagnetic Curvature Resilience: An Information-Geometry Metric for Wireless Quantum Networks},
author = {Vignesh Raman and Riccardo Bassoli and Frank H. P. Fitzek},
year = {2026},
date = {2026-04-19},
urldate = {2026-04-19},
booktitle = {20th European Conference on Antennas and Propagation (EuCAP)},
pages = {5},
address = {Dublin, Ireland},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Nande, Swaraj Shekhar; Raman, Vignesh; Yin, Ming; Kim, Ju Hoon; Bassoli, Riccardo; Fitzek, Frank H. P.
Quantum-Assisted Packet Synchronization for 5G/6G: Architecture, Standards Alignment, and Positioning Gains Proceedings Article
In: International Conference on Quantum Communications, Networking, and Computing (QCNC 2026), Kobe, Japan pubstate = accepted, 2026.
@inproceedings{Nande2026:QAPacketSync,
title = {Quantum-Assisted Packet Synchronization for 5G/6G: Architecture, Standards Alignment, and Positioning Gains},
author = {Swaraj Shekhar Nande and Vignesh Raman and Ming Yin and Ju Hoon Kim and Riccardo Bassoli and Frank H. P. Fitzek},
year = {2026},
date = {2026-04-01},
booktitle = {International Conference on Quantum Communications, Networking, and Computing (QCNC 2026)},
address = {Kobe, Japan pubstate = accepted},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Yilmaz, Isikcan; Schulz, Jonas; Das, Siddharth; Pousa, Ricardo J. B.; Gonzalez, Leonardo; Cabrera, Juan A.; Seeling, Patrick; Fitzek, Frank H. P.
Revisiting in-Network Caches on Constrained IEEE 802.15.4 IoT Hardware: Reproducible Testbeds and Future Research Motivation Proceedings Article
In: 2026 IEEE Wireless Communications and Networking Conference Workshops (WCNCW): WS14: IEEE 1st International Workshop on Next-Generation Advanced Industrial Internet of Things (IIoT) (WCNCW 2026 - WS14), pp. 5.94, KUALA LUMPUR, Malaysia, 2026.
@inproceedings{Yilm2604:Revisiting,
title = {Revisiting in-Network Caches on Constrained IEEE 802.15.4 IoT
Hardware: Reproducible Testbeds and Future Research Motivation},
author = {Isikcan Yilmaz and Jonas Schulz and Siddharth Das and Ricardo J. B. Pousa and Leonardo Gonzalez and Juan A. Cabrera and Patrick Seeling and Frank H. P. Fitzek},
year = {2026},
date = {2026-04-01},
booktitle = {2026 IEEE Wireless Communications and Networking Conference Workshops
(WCNCW): WS14: IEEE 1st International Workshop on Next-Generation Advanced
Industrial Internet of Things (IIoT) (WCNCW 2026 - WS14)},
pages = {5.94},
address = {KUALA LUMPUR, Malaysia},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Yilmaz, Isikcan; Schulz, Jonas; Cabrera, Juan A.; Seeling, Patrick; Fitzek, Frank H. P.
Network Coding Assisted In-Network Caching Implementation for Multi-Hop IoT Networks Proceedings Article
In: 2026 Global Information Infrastructure and Networking Symposium (GIIS) (GIIS'26), pp. 4.56, Nanjing, China, 2026.
@inproceedings{Yilm2604:Network,
title = {Network Coding Assisted In-Network Caching Implementation for Multi-Hop
IoT Networks},
author = {Isikcan Yilmaz and Jonas Schulz and Juan A. Cabrera and Patrick Seeling and Frank H. P. Fitzek},
year = {2026},
date = {2026-04-01},
booktitle = {2026 Global Information Infrastructure and Networking Symposium (GIIS)
(GIIS'26)},
pages = {4.56},
address = {Nanjing, China},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Nazari, Hosein K.; Senk, Stefan; Pahlevani, Peyman; Cabrera, Juan A.; Fitzek, Frank H. P.
Fly-PRAC: Packet Recovery for Random Linear Network Coding Miscellaneous
arXiv preprint arXiv:2603.10266, 2026.
@misc{Nazari2026:FlyPRAC,
title = {Fly-PRAC: Packet Recovery for Random Linear Network Coding},
author = {Hosein K. Nazari and Stefan Senk and Peyman Pahlevani and Juan A. Cabrera and Frank H. P. Fitzek},
url = {http://arxiv.org/abs/2603.10266},
year = {2026},
date = {2026-03-01},
howpublished = {arXiv preprint arXiv:2603.10266},
keywords = {},
pubstate = {preprint},
tppubtype = {misc}
}
Scheinert, Tobias; Nazari, Hosein K.; Liu, How-Hang; Senk, Stefan; Nguyen, Giang T.; Muehleisen, Maciej; Fitzek, Frank H. P.
Reliable Edge Control over 5G-TSN: Demonstrating End-to-End Prioritization with Inverted Pendulums Proceedings Article
In: IEEE Consumer Communications and Networking Conference, 2026, (accepted for publication).
@inproceedings{Scheinert2025:reliable,
title = {Reliable Edge Control over 5G-TSN: Demonstrating End-to-End Prioritization with Inverted Pendulums},
author = {Tobias Scheinert and Hosein K. Nazari and How-Hang Liu and Stefan Senk and Giang T. Nguyen and Maciej Muehleisen and Frank H. P. Fitzek},
year = {2026},
date = {2026-01-09},
urldate = {2026-01-09},
booktitle = {IEEE Consumer Communications and Networking Conference},
note = {accepted for publication},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Zhang, Shreeja Sridharan Abdelkrim Menina Jiajing; Fitzek, Frank H. P.
Toward a Trust-Centric Semantic Mobile Core Leveraging Quantum Security Journal Article
In: IEEE Communications Standards Magazine, vol. 0, 2026, (Early access).
@article{Zhang2026TrustCentric,
title = {Toward a Trust-Centric Semantic Mobile Core Leveraging Quantum Security},
author = {Shreeja Sridharan Abdelkrim Menina Jiajing Zhang and Frank H. P. Fitzek},
doi = {10.1109/MCOMSTD.2026.3658217},
year = {2026},
date = {2026-01-01},
urldate = {2026-01-01},
journal = {IEEE Communications Standards Magazine},
volume = {0},
note = {Early access},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Schulz, Jonas; Seeling, Patrick; Reisslein, Martin; Fitzek, Frank H. P.
No Further Delay: Making Time an Ally of Edge Computation of AI Workloads Journal Article
In: IEEE Internet of Things Magazine, pp. 1-8, 2025.
@article{schulz2025:nofurther,
title = {No Further Delay: Making Time an Ally of Edge Computation of AI Workloads},
author = {Jonas Schulz and Patrick Seeling and Martin Reisslein and Frank H. P. Fitzek},
url = {https://ieeexplore.ieee.org/document/11316165},
doi = {10.1109/MIOT.2025.3637145},
year = {2025},
date = {2025-12-25},
urldate = {2025-12-25},
journal = {IEEE Internet of Things Magazine},
pages = {1-8},
abstract = {Artificial Intelligence (AI) computation workloads are very challenging for resource-constrained Internet-of-Things (IoT) devices. Offloading of the AI workloads to edge nodes introduces network transport latencies that may make the offloading infeasible for low-latency applications. For applications that allow for anticipatory (speculative) computation with partial application datasets, e.g., scalable encoded images, we introduce and evaluate the concept of No further delay. We define No further delay as the optimal tradeoff time instant between waiting for more application data (which increases the latency) and starting the speculative computation (whose success probability increases with more data). We evaluate the expected negative latency achieved by anticipatory computing with partial application-layer datasets compared to computation on the device (with full datasets) with a novel adaptation of the speedup factor (ratio) from Amdahl’s Law. Previously, speculative execution has been limited to the instruction-level in microprocessor program execution; in contrast, we are the first to propose and examine speculative execution for application-layer datasets. For a computer vision inference workload with progressively coded JPEG images, we find that our No further delay approach with edge node offloading achieves three-fold speedups (despite the network latency to the edge node). This article serves as problem definition for a new class of AI mechanisms that should be developed in future research to estimate the optimal No further delay time instant based, e.g., on historical success rates of application-layer tasks computed with partial datasets.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Tunc, Hilal Sultan Duranoglu; Halder, Joy; Bassoli, Riccardo; Fettweis, Gerhard P.; Fitzek, Frank H. P.
Leveraging Network Structure to Emulate Quantum Memory Journal Article
In: IEEE Network, pp. 1-9, 2025.
@article{Tunc2025:QuantumMemory,
title = {Leveraging Network Structure to Emulate Quantum Memory},
author = {Hilal Sultan Duranoglu Tunc and Joy Halder and Riccardo Bassoli and Gerhard P. Fettweis and Frank H. P. Fitzek},
url = {https://ieeexplore.ieee.org/document/11305221},
doi = {10.1109/MNET.2025.3636661},
year = {2025},
date = {2025-12-19},
urldate = {2025-12-19},
journal = {IEEE Network},
pages = {1-9},
abstract = {Quantum memories, which play a critical role in various aspects of quantum networks—such as timing synchronization, fidelity preservation, network performance continuity, and efficient resource management—are not well-suited for practical deployment due to their high cost and complex implementation requirements. For this reason, in our study, we propose a low-cost and easy-to-implement alternative method called soft memory, which does not require any physical quantum memory hardware and is based on a delay-aware routing strategy. Under varying threshold and request time window values, we evaluate two key performance metrics—mean time difference and request success rate—across three types of quantum networks: (i) memoryless quantum networks, (ii) quantum networks equipped with fixed qubit storage time, and (iii) the proposed soft memory architecture. Despite requiring no additional physical hardware, the soft memory approach achieves a request success rate nearly equivalent to that of a quantum memory with 0.15-second storage time, while providing a lower mean time difference.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Kurt, Mehmet Akif; Nazari, Hosein K.; Pahlevani, Peyman; Nguyen, Giang T.; Gabriel, Jennifer; Fitzek, Frank H. P.
Collective Verification Strategies for Complexity Reduction in Homomorphic MAC Proceedings Article
In: 2025 IEEE Globecom Workshops (GC Wkshps): Workshop on Enabling Security, Trust, and Privacy in 6G Wireless Systems (GC Wkshps 2025-Security6G), pp. 5.91, Taipei, Taiwan, 2025.
@inproceedings{Kurt2512:Collective,
title = {Collective Verification Strategies for Complexity Reduction in Homomorphic MAC},
author = {Mehmet Akif Kurt and Hosein K. Nazari and Peyman Pahlevani and Giang T. Nguyen and Jennifer Gabriel and Frank H. P. Fitzek},
year = {2025},
date = {2025-12-08},
urldate = {2025-12-08},
booktitle = {2025 IEEE Globecom Workshops (GC Wkshps): Workshop on Enabling Security, Trust, and Privacy in 6G Wireless Systems (GC Wkshps 2025-Security6G)},
pages = {5.91},
address = {Taipei, Taiwan},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Radak, Hristina; Scheunert, Christian; Fitzek, Frank H. P.
A Closed-form Solution to the Wahba's Problem for Pairwise Similar Quaternions Miscellaneous
2025.
@misc{radak2025:Wahba,
title = {A Closed-form Solution to the Wahba's Problem for Pairwise Similar Quaternions},
author = {Hristina Radak and Christian Scheunert and Frank H. P. Fitzek},
url = {http://arxiv.org/abs/2512.07597},
year = {2025},
date = {2025-12-08},
urldate = {2025-12-08},
publisher = {arXiv},
keywords = {},
pubstate = {published},
tppubtype = {misc}
}
Nunavath, Nikhitha; Chen, Jiechen; Simeone, Osvaldo; Bassoli, Riccardo; Fitzek, Frank H. P.
Communicating Properties of Quantum States over Classical Noisy Channels Miscellaneous
2025.
@misc{nunavath2025communicating,
title = {Communicating Properties of Quantum States over Classical Noisy Channels},
author = {Nikhitha Nunavath and Jiechen Chen and Osvaldo Simeone and Riccardo Bassoli and Frank H. P. Fitzek},
url = {https://arxiv.org/abs/2512.04913},
doi = {10.48550/arXiv.2512.04913},
year = {2025},
date = {2025-12-04},
urldate = {2025-01-01},
publisher = {arXiv},
keywords = {},
pubstate = {published},
tppubtype = {misc}
}
Zheng, Ruifeng; Zhou, Pengjie; Hofmann, Pit; Cabrera, Juan A.; Fitzek, Frank H. P.
DNA-Based Molecular Communication: A Markov Approach to Channel Modeling and Detection Proceedings Article
In: IEEE Global Communications Conference (Globecom), 2025.
@inproceedings{Zheng2025:DNABased,
title = {DNA-Based Molecular Communication: A Markov Approach to Channel Modeling and Detection},
author = {Ruifeng Zheng and Pengjie Zhou and Pit Hofmann and Juan A. Cabrera and Frank H. P. Fitzek},
year = {2025},
date = {2025-12-01},
urldate = {2025-12-01},
booktitle = {IEEE Global Communications Conference (Globecom)},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Notcker, Joachim; Scotece, Domenico; Bassoli, Riccardo; Foschini, Luca; Fitzek, Frank H. P.
Modeling and Analysis of Quantum Traffic Matrices in Quantum Networks Proceedings Article
In: IEEE Global Communications Conference (Globecom), pp. 5.98, Taipei, Taiwan, 2025.
@inproceedings{Notcker2512:Modeling,
title = {Modeling and Analysis of Quantum Traffic Matrices in Quantum Networks},
author = {Joachim Notcker and Domenico Scotece and Riccardo Bassoli and Luca Foschini and Frank H. P. Fitzek},
year = {2025},
date = {2025-12-01},
urldate = {2025-12-01},
booktitle = {IEEE Global Communications Conference (Globecom)},
pages = {5.98},
address = {Taipei, Taiwan},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
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