Generated by All in One SEO v4.9.1.1, this is an llms.txt file, used by LLMs to index the site. # DN 6th Sense Doctoral Network on Joint Communication and Sensing in 6G Networks ## Sitemaps - [XML Sitemap](https://dn6sense.eu/sitemap.xml): Contains all public & indexable URLs for this website. ## Posts - [Why Future Mobile JCAS Systems May Move onto the Screen?](https://dn6sense.eu/blog/why-future-mobile-jcas-systems-may-move-onto-the-screen/) - Each generation of wireless communication has reshaped not only network capability, but also the physical design of mobile devices. Early mobile phones relied on exposed external antennas for basic voice communication, while modern 4G and 5G smartphones integrate multiple compact antennas along the device edges to support high-speed multiple-input multiple-output (MIMO) connectivity [1]. As wireless - [When the same motion looks different: Wireless channel ambiguities](https://dn6sense.eu/blog/when-the-same-motion-looks-different-wireless-channel-ambiguities/) - Sensors are made to capture a quantity of interest. Cameras capture images; thermometers capture temperatures. These devices are meant to be faithful, and their readings directly reveal what we want to know. In Wi-Fi sensing, we do not design the sensor but instead repurpose a communication byproduct: wireless channel measurements. The concept of Wi-Fi sensing - [MSCA Doctoral Candidate Receives the Best Student Paper Award at 6th IEEE Symposium on Joint Communications & Sensing (JC&S), Ponte di Legno](https://dn6sense.eu/news/msca-doctoral-candidate-receives-the-best-student-paper-award-at-6th-ieee-symposium-on-joint-communications-sensing-jcs-ponte-di-legno/) - On the 13th of January, Qing Zhang (DC08) has been awarded with the IEEE Best Student Paper Award at the 6th IEEE Symposium on Joint Communication and Sensing, held in Ponte di Legno, Italy. Zhang conducted research at KU Leuven, as part of the MSCA 6th Sense, which aims to advance innovation in the domain - [Why Visible Light Positioning is the Future of Indoor Drone Navigation](https://dn6sense.eu/blog/why-visible-light-positioning-is-the-future-of-indoor-drone-navigation/) - The Challenge of the indoor positioning system To push toward fully autonomous smart factories, drones and mobile robots are becoming indispensable. However, indoor autonomous navigation still faces a massive barrier: GPS signals are blocked by roofs and walls, making them unsuitable for indoor navigation. While traditional radio-frequency (RF) solutions like Wi-Fi or Bluetooth can be - [Why Millimeter Wave Frequencies Change Physical Layer Security?](https://dn6sense.eu/blog/why-millimeter-wave-frequencies-change-physical-layer-security/) - Modern wireless systems are shifting toward higher frequency bands, including millimeter wave and beyond, to exploit wider bandwidths for higher data rates and reduced latency [1]. While these bands unlock significant performance gains, they also fundamentally change how wireless channels behave. As a result, long-standing assumptions about security mechanisms that rely on physical channel properties - [NWE III in the Picturesque Mountains of Ponte di Legno, Italy](https://dn6sense.eu/events/nwe-iii-in-the-picturesque-mountains-of-ponte-di-legno-italy/) - On January 13th, 2026, immediately following the 1st Winter School on Joint Communication & Sensing, the consortium gathered once again in the snowy town of Ponte di Legno for the third Network‑Wide Event (NWE III). Held in a welcoming municipal hall, "Sala Polifunzionale", generously provided by the local authorities, the meeting offered a cozy refuge - [NWE II in the Historic and Innovative City of Delft, The Netherlands](https://dn6sense.eu/news/nwe-ii-in-the-historic-and-innovative-city-of-delft-the-netherlands/) - From October 6th to 9th, 2025, TU Delft hosted the second Network-Wide Event of the MSCA DN 6thSense, focusing on Joint Communication and Sensing (JCAS) in 6G Networks. This event also coincided with the Mid-Term Project Review Meeting with the Project Officer, providing a key opportunity for Doctoral Candidates (DCs), supervisors, and consortium partners to - [Why Privacy Is Critical (and Difficult) in JCAS](https://dn6sense.eu/blog/why-privacy-is-critical-and-difficult-in-jcas/) - JCAS blends connectivity with perception. This perception is achieved by exploiting how radio energy interacts with its surroundings — people and objects reflect, absorb, and scatter the wave — and systems infer the scene from changes in amplitude, phase, timing, and direction. Essentially, a transmitter acts as a lighthouse: every transmission lights up whatever it - [Why Transparent Antennas are Critical to JCAS in Mobile Devices?](https://dn6sense.eu/blog/why-transparent-antennas-are-critical-to-jcas-in-mobile-devices/) - Each generation of wireless communication has brought transformative changes to our daily lives and the design of mobile devices. With 6G on the horizon, one of its most promising features—Joint Communication and Sensing (JCAS)—aims to merge wireless connectivity with high-precision sensing. Today, most JCAS research focuses on base stations, where large antenna arrays enable advanced - [Why New Waveforms Matter for JCAS](https://dn6sense.eu/blog/why-new-waveforms-matter-for-jcas/) - The Challenge of Communication and Sensing in One System 6G networks will not only connect people but also sense the world around them. This is the vision of Joint Communication and Sensing (JCAS): a single system that can stream data and, at the same time, detect objects, measure distances, and estimate velocities. But there is - [Why Phase Synchronization is Critical for JCAS Localization](https://dn6sense.eu/blog/why-phase-synchronization-is-critical-for-jcas-localization/) - In the world of Joint Communication and Sensing (JCAS), achieving precise localization is a game-changer. Whether it’s enabling autonomous vehicles to navigate complex environments or powering smart infrastructure, accuracy in localization is critical. One of the most fundamentally essential aspects in this domain is phase synchronization. The Power of Phase in Localization Phase information - [TU Delft](https://dn6sense.eu/consortium/tu-delft/) - Delft University of Technology (TU Delft) is the oldest and largest university of technology in the Netherlands. The university is ranked as the most prestigious institution of higher education in the Netherlands. The Embedded System and Networked Systems groups from Computer Science department will be contributing to 6thSense project in the several areas in wireless - [KU Leuven](https://dn6sense.eu/consortium/ku-leuven/) - KU Leuven is by far the largest university in Belgium in terms of research funding and expenditure. It is a charter member of the LERU. It is ranked first in Thomson Reuters’ list of Europe’s Most Innovative Universities for more than five years in a row. The Electrical Engineering Department (ESAT) at KUL conducts research - [U Trento](https://dn6sense.eu/consortium/u-trento/) - UNITN has a long-standing history of scientific excellence and ranked 36th in “The European Teaching Ranking 2018” (1st among Italian Universities), 440th in the QS World University Rankings 2022 (10th among Italian Universities), and in the 34% of the top universities worldwide. More recently, UNITN confirmed its 1st rank among medium-sized Italian universities for the - [Why Dynamic Multi-Band Selection is Critical for JCAS ?](https://dn6sense.eu/blog/why-dynamic-multi-band-selection-is-critical-for-jcas/) - In the evolving landscape of Joint Communication and Sensing (JCAS), the ability to flexibly choose between multiple frequency bands is not just a convenience, it’s a strategic enabler. From autonomous vehicles coordinating at dense urban intersections to UAVs conducting terrain mapping while maintaining data links, multi-band adaptability enables dynamic spectrum allocation across diverse operational scenarios. - [IMDEA Networks](https://dn6sense.eu/consortium/imdea-networks/) - IMDEA Networks is an international research institute located in Madrid, with the objective of performing worldclass research, carrying out technology transfer and attracting talented researchers to Madrid and Spain. IMDEA is funded by the Regional Government of Madrid, other public bodies, and private institutions. Its key expertise lies in the areas of wireless networking, networked - [DC9: Adaptive algorithms for object detection in JCAS](https://dn6sense.eu/positions/dc9-multi-modal-sensor-fusion-for-jcas-systems/) - Task: Adaptive algorithms for object detection in JCAS (WP3) Host institution: UNITN Country: Italy Supervisor: Prof. P. Casari [UNITN] Co-supervisors: Prof F. Granelli [UNITN]; Dr. Mikko Uusitalo [Nokia]; Objectives: To optimise object detection and sensing by minimising the signalling overhead of sensing through intelligent allocation of sensing signals; To exploit multi-agent reinforcement learning techniques to - [DC8: Multi-band channel analysis for accurate JCAS](https://dn6sense.eu/positions/dc8-multi-band-channel-analysis-for-accurate-jcas/) - Task: Multi-band channel analysis for accurate JCAS (WP3) Host institution: KU Leuven Country: Belgium Supervisor: Prof. S. Pollin [KU Leuven] Co-supervisors: Dr. Yang Miao [KU Leuven]; Dr. W. Nitzold [NI] Objectives: To develop techniques to match the channel observation across different bands; To exploit the feature richness of multi-band sensing to detect minute changes of - [6th Sense Launches in Madrid with First Network Event](https://dn6sense.eu/news/6th-sense-launches-in-madrid-with-first-network-event/) - From March 30th to April 4th, the first Network Event of the 6thSense project at IMDEA, marking the official launch of this exciting initiative in the field of Joint Communication and Sensing (JCAS). As part of the Marie Curie programme, these events are about bringing people together—Doctoral Candidates (DCs), supervisors, and partners—to build connections, - [DC10: Multi-modal sensor fusion for JCAS systems](https://dn6sense.eu/positions/dc10-multi-modal-sensor-fusion-for-jcas-systems/) - Task: Multi-modal sensor fusion for JCAS systems (WP3) Host institution: Bosch Country: Germany Supervisor: Prof. M. Hollick [TU Darmstadt] Co-suopervisors: Dr. G. H. Sim [TU Darstadt]; Dr. A. Mueller [Bosch] Objectives: To devise effective context-aware algorithms to fuse multi-modal sensor information (e.g., from gyroscope, camera, etc.) in JCAS systems to enhance their robustness; To minimise - [DC2: Robust mmWave communication and sensing in smart environments](https://dn6sense.eu/positions/dc2-robust-mmwave-communication-and-sensing-in-smart-environments/) - Task: Robust mmWave communication and sensing in smart environments (WP1) Host institution: TU Delft Country: The Netherlands Supervisors: Dr. A. Asadi [TUDa] Co-supervisors/mentors: Dr. Gek Hong Sim, Dr. Uusitalo Objectives: To detect/track objects based on the Doppler shift and the AoA analysis of the CSI at the mmWave receiver; To dynamically configure and allocate the - [DC1: CSI-based obstacle/human detection and tracking at mmWave](https://dn6sense.eu/positions/dc1-csi-based-obstacle-human-detection-and-tracking-at-mmwave/) - Task: CSI-based obstacle/human detection and tracking at mmWave (WP1) Host institution: IMDEA Country: Spain Supervisors: Prof. J. Widmer [IMDEA Networks] Co-supervisors/mentors: Dr. Jesus O. Lacruz [IMDEA Networks], Dr. A. Lutu [Telefonica] Objectives: To investigate methods for accurate angle, range and (micro-)Doppler estimations from CSI in presence of hardware imperfection; To design practical solutions for cooperative - [DC4: Architecture and algorithm design for large-scale privacy-preserving JCAS](https://dn6sense.eu/positions/dc4-architecture-and-algorithm-design-for-large-scale-privacy-preserving-jcas/) - Task: Architecture and algorithm design for large-scale privacy-preserving JCAS (WP2) Host institution: Nokia-FI Country: Finland Supervisors: Dr. M. Uusitalo [Nokia-FI] Co-supervisors/mentors: Dr. A. Asadi [TU Darmstadt], Dr. T. Abrudan [Nokia-FI] Objectives: To develop algorithms for distributed sensing and fusion relying on MAC layer coordination of multiple base stations; To propose solutions to minimise the impact - [DC3: Visible light-based sub-meter single-anchor localisation and (passive) communication](https://dn6sense.eu/positions/dc3-visible-light-based-sub-meter-single-anchor-localisation-and-passive-communication/) - Task: Visible light-based sub-meter single-anchor localisation and (passive) communication (WP1) Host institution: TU Delft Country: The Netherlands Supervisors: Prof. M. Zuniga [TU Delft] Co-supervisors/mentors: Prof. Q. Wang [TU Delft], Dr. R. Bian [PureLiFi] Objectives: To derive a framework for sub-meter light-weight localisation and people counting with a single bulb as the anchor; To design passive - [DC5: Security issues of JCAS](https://dn6sense.eu/positions/dc5-security-issues-of-jcas/) - Task: Security issues of JCAS (WP2) Host institution: TU Delft Country:The Netherlands Supervisors: Prof. M. Hollick [TUDa] Co-supervisors/mentors: Dr. Arash Asadi [TUDa], Dr. Gek Hong Sim, Dr. M. Uusitalo Objectives: To conduct a systematic security analysis of JCAS systems focusing on new attack vectors that exploit the sensing capabilities of the network; To devise lightweight - [DC7: Light-weight JCAS analytics for resource-constrained embedded devices](https://dn6sense.eu/positions/dc7-light-weight-jcas-analytics-for-resource-constrained-embedded-devices/) - Task: Light-weight JCAS analytics for resource-constrained embedded devices (WP3) Host institution: TU Delft Country: The Netherlands Supervisors: Prof. Q. Wang [TU Delft] Co-supervisors: Prof. J. Yang [TU Delft], Dr. A. Mueller [Bosch] Objectives: To design self-optimising algorithms for allocation of on-board computational and communication resources for JCAS; To employ knowledge distillation techniques to create performant - [DC6: Non-coherent distributed-MIMO for JCAS](https://dn6sense.eu/positions/dc6-non-coherent-distributed-mimo-for-jcas/) - Task: Non-coherent distributed-MIMO for JCAS (WP2) Host institution: KU Leuven Country: Belgium Supervisors: Prof. S. Pollin [KU Leuven] Co-supervisors/mentors: Dr. Hazem Sallouha [KU Leuven], Dr. Pieter Crombez [Televic] Objectives: To develop synchronisation algorithms for maximal combining of the transmit/receive signals from various devices, enabling cooperative processing in non-coherent systems; To develop algorithms to maximise the - [UCLA](https://dn6sense.eu/consortium/ucla/) - [Princeton University](https://dn6sense.eu/consortium/princeton-university/) - [PureLiFi](https://dn6sense.eu/consortium/purelifi/) - [Televic Healthcare](https://dn6sense.eu/consortium/televic-healthcare/) - [Nokia-DE](https://dn6sense.eu/consortium/nokia-de/) - [IMEC](https://dn6sense.eu/consortium/imec/) - [National Instruments](https://dn6sense.eu/consortium/national-instruments/) - [Telefonica](https://dn6sense.eu/consortium/telefonica/) - [Ford](https://dn6sense.eu/consortium/ford/) - [NCSU](https://dn6sense.eu/consortium/ncsu/) - [Bosch](https://dn6sense.eu/consortium/bosch/) - [Nokia-FI](https://dn6sense.eu/consortium/nokia-fi/) - [WP4: Key applications](https://dn6sense.eu/work-packages/wp4-key-applications/) - Objectives: Developing accurate multi-person activity/gesture and vital sign monitoring via multi-band localisation and sensing for person and activity separation in the angular and frequency domains (Obj9). Devising privacy-preserving techniques to create real-time and accurate digital twins of factory floors (Obj10). Developing novel perception fusion techniques by combining sensing information from the network with a vehicle’s - [WP3: JCAS analytics](https://dn6sense.eu/work-packages/wp3-jcas-analytics/) - Objectives: Developing adaptive self-optimising algorithms for allocation of on-board resources; and leveraging knowledge distillation techniques for large ML model compression with minimal accuracy loss (Obj5); Devising signal processing techniques for multiband channel estimation and channel-event matching and leveraging federated learning to preserve privacy (Obj6); Optimising JCAS for accurate object detection/tracking, and low-latency reinforcement learning for - [WP2: JCAS network integration](https://dn6sense.eu/work-packages/wp2-jcas-network-integration/) - Objectives: Addressing network integration challenges through: privacy-aware architecture and protocol design for exchange of sensing information among several base stations for collaborative sensing (Obj3a); and developing fast multi-band and multi-beam hopping mechanisms to address potential security vulnerabilities arising from integration of communication and sensing (Obj3b). Devising high-precision synchronisation mechanisms for non-coherent JCAS systems suffering from - [WP1: JCAS in new frequency bands](https://dn6sense.eu/work-packages/wp1-jcas-in-new-frequency-bands/) - Objectives: Devising advanced signal processing techniques and efficient algorithms for sensing parameter estimation from CSI in mmWave MIMO systems for better object and environment sensing and classification (Obj1a); and developing RIS-assisted solutions to circumvent high penetration loss and channel sparsity at mmWave frequencies through controlling multipath signals (Obj1b). Design lowcomplexity visible light JCAS systems via ## Pages - [Home](https://dn6sense.eu/) - 6th SenseJoint Communication and Sensing in 6G Networks Learn more about the project6th SenseJoint Communication and Sensing in 6G Networks Learn more about the project Preselection of candidates We thank all 109 applicants for the 10 DC positions during the first recruitment session (between October 15th, 2023, and January 25th, 2024) of the MSCA DN - [MSCA DN 6thSense Network-Wide Event 4 - September 21-24, 2026 - Nokia in Finland](https://dn6sense.eu/msca-dn-6thsense-network-wide-event-4-september-21-24-2026-at-nokia-in-finland/) - [Publications](https://dn6sense.eu/communication/publications/) - [Public Deliverables](https://dn6sense.eu/communication/public-deliverables/) - [NWE3 Survey Form](https://dn6sense.eu/nwe3-survey-form/) - [Application form](https://dn6sense.eu/recruitment/application-form/) - The recruitment is complete, there are no available positions in MSCA DN 6th Sense project. - [Team](https://dn6sense.eu/our-team/) - Doctoral Candidates Tony Yang DC1 Florian Kosterhon DC2 Chengwei Huang DC3 Alexandra Lopes DC4 Fabian Portner DC5 Aymen Hamrouni DC6 Shun Zhuge DC7 Qing Zhang DC8 Junjie Wu DC9 Hussein Ali Abdulhadi Al-Hakeem DC10 Supervisors Joerg Widmer IMDEA Networks Sofie Pollin KU Leuven Hazem Sallouha KU Leuven Qing Wang TU Delft Paolo Casari University of - [MSCA DN 6thSense Network-Wide Event 3 - January 13, 2026 - Ponte di Legno (Italy)](https://dn6sense.eu/msca-dn-6thsense-network-wide-event-3-january-13-2026-ponte-di-legno-italy/) - [MSCA DN 6thSense Network-Wide Event 2 + MTM with PO - October 6-9, 2025 - Registration form](https://dn6sense.eu/msca-dn-6thsense-network-wide-event-2-mtm-with-po-october-6-9-2025-registration-form/) - [testpage](https://dn6sense.eu/testpage/) - [About the project](https://dn6sense.eu/about-the-project/) - About the project Learn About DN 6th Sense project 6th Sense addresses the fundamental challenges of joint communication and sensing (JCAS) through an innovative and interdisciplinary program. In a concerted effort, the findings of 6thSense will be tailored to key 6G use cases to boost Europe’s position in the global communications market both from a - [Communication](https://dn6sense.eu/communication/) - Blogs News - [Blog](https://dn6sense.eu/blog/) - [network-wide event 1: Survey form DC](https://dn6sense.eu/nwe1_survey-form-dc/) - Please fill in this Survey Form to provide us your feedback on the MSCA DN 6thSense network-wide event 1, which took place on March 31 - April 3, 2025, and was organized by IMDEA in Madrid. Regarding the scores: 1 = Poor, 5 = Excellent, N.A. = Not Applicable. - [network-wide event 1: Survey form consortium](https://dn6sense.eu/nwe1_survey-form-consortium/) - Please fill in this Survey Form to provide us your feedback on the MSCA DN 6thSense network-wide event 1, which took place on March 31 - April 3, 2025, and was organized by IMDEA in Madrid. Regarding the scores: 1 = Poor, 5 = Excellent, N.A. = Not Applicable. - [MSCA DN 6th Sense Online Kick-off Event October 16, 2024 - Registration Form](https://dn6sense.eu/msca-dn-6th-sense-online-kick-off-event-october-16-2024-registration-form/) - [MSCA DN 6th Sense Registration Form - Online Recruitment Event](https://dn6sense.eu/registration-form-online-recruitment-event/) - [6th Sense Consortium](https://dn6sense.eu/6th-sense-consortium/) - 6th Sense Consortium The 6th Sense consortium comprises leading members of large EU initiatives (5G-PPP), the coordinator of the first EU 6G initiative (Hexa-X), and industry leaders (e.g., Nokia, Telefonica, Bosch, Ford). 6thSense tackles the interdisciplinary nature of JCAS through a diverse and complementary group of experts in theoretical and experimental aspects of computer science, - [Contact Page](https://dn6sense.eu/contact-page/) - Contact Us Now Write Us a Message Fill in the contact form and we will get back to you as soon as possible. DN 6th Sense DN 6th Sense is a MSCA Doctoral Network research project funded by the European Union Our Address Kasteelpark Arenberg 10 – box 2444 3001 Leuven, Belgium Email info@dn6sense.eu - [Recruitment](https://dn6sense.eu/recruitment/) - [Pricing](https://dn6sense.eu/pricing/) - Basic pack $20.00 High speed internet Free parking space Free parking space Full access Book space Standard pack $40.00 High speed internet Free parking space Free parking space Full access Book space Ultimate pack $90.00 High speed internet Free parking space Free parking space Full access Book space Explore codesk spaces Office suite There are - [Our Gallery](https://dn6sense.eu/our-gallery/) - 12 - [Meet Our Team](https://dn6sense.eu/volunteer/) - Jessica Brown Managing Director Yoni Albert Student Christine Eve Managing Director David Hardson Co-Founder 12 Ready to Raise Funds for Idea? 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Within the 6th Sense Project, his research develops adaptive, context-aware algorithms for multimodal sensor fusion in 6G Joint Communication and Sensing (JCAS) systems. The goal is to enhance robustness and awareness through resource-efficient designs. Hussein earned the Dipl.-Ing. degree in Electrical-Electronics Engineering from the Lebanese University and the M.Sc. in Communications Engineering - [Aymen Hamrouni](https://dn6sense.eu/team/aymen-hamrouni/) - Aymen Hamrouni is a Ph.D. researcher at the WaveCore group within the Department of Electrical Engineering (ESAT) at KU Leuven, Belgium. His research within the 6 th Sense project focuses on enabling cooperative processing in non-coherent network systems to achieve accurate multi-target and area sensing, advancing the capabilities of next-generation wireless networks. He earned a - [Junjie Wu](https://dn6sense.eu/team/junjie-wu/) - DC9: Junjie Wu (University of Trento) Junjie is a PhD candidate at the Mobile Adaptive and pervasive NeTwork communicAtions (MANTA) research laboratory at the University of Trento, as part of the 6thSense project. His research focuses on object detection algorithms in joint communication and sensing (JCAS), with an emphasis on developing intelligent sensing signal allocation - [Shun Zhuge](https://dn6sense.eu/team/shun-zhuge/) - Shun Zhuge is a Ph.D. Candidate in the Embedded Systems group at the Delft University of Technology. As part of the 6thSense project, his research focuses on developing lightweight Joint Communication and Sensing (JCAS) solutions for embedded devices. This includes designing self-optimizing algorithms that dynamically manage computational and communication resources, and developing compressed models that - [Fabian Portner](https://dn6sense.eu/team/fabian-portner/) - Fabian is a Ph.D. candidate in the Embedded Systems group at the Delft University of Technology. His research focuses on advancing WiFi sensing by improving data usability and developing frameworks that bridge the gap between theoretical advancements and practical applications. His work emphasizes making sensing technologies more robust, reliable, and accessible for end-users. He holds - [Florian Kosterhon](https://dn6sense.eu/team/florian-kosterhon/) - Florian Kosterhon is a Ph.D. candidate in the Embedded Systems group at Delft University of Technology. As part of the 6th Sense Project, his research focuses on robust millimeter-wave communication and sensing in smart environments. He is particularly interested in physical-layer techniques for secure communication, object detection, and tracking. His work combines theoretical development with - [Sofie Pollin](https://dn6sense.eu/team/sofie-pollin/) - I did my PhD research at imec, and I obtained my PhD on cross-layer optimization for energy efficient wireless systems in September 2006 from KU Leuven, with honors. During the PhD, I had the opportunity to do an internship at National Semiconductor Corporation, Santa Clara USA, and be a visiting researcher at UC Berkeley. After - [Hazem Sallouha](https://dn6sense.eu/team/hazem-sallouha/) - I obtained my PhD in Electrical Engineering from KU Leuven, Belgium, in 2020. Immediately after completing my PhD, I was awarded a postdoctoral mandate through KU Leuven's internal funding. This was directly followed by a three-year FWO postdoctoral fellowship, which began in 2021. Between September 2022 and February 2023, I spent six amazing months as - [Marco Zuniga](https://dn6sense.eu/team/marco-zuniga/) - I am an Associate Professor in the Computer Science Department at TU Delft. My research interests are broadly in the areas of the Internet of Things (IoT), visible light communication, embedded AI, mmWave radar sensing, and pervasive & mobile computing. I obtained my Ph.D. and M.Sc. in Electrical Engineering from the University of Southern California, - [Qing Wang](https://dn6sense.eu/team/qing-wang/) - I am an Associate Professor in the Embedded Systems Group at the Computer Science Department at TU Delft. My research interests include Embedded AI for IoT and 6G, as well as Visible Light Communication and Sensing. I am a co-founder of both the Embedded AI Lab at TU Delft and the OpenVLC platform. I teach Embedded - [Arash Asadi](https://dn6sense.eu/team/arash-asadi/) - I am an Assistant Professor in the Embedded Systems Group at Delft University of Technology (TU Delft), where I lead the Wireless Communication and Sensing Lab (WISE). My research focuses on the intersection of wireless communication and sensing, particularly in the context of 6G networks. I am interested in developing practical solutions for future wireless - [Mikko Uusitalo](https://dn6sense.eu/team/mikko-uusitalo/) - [Traian Abrudan](https://dn6sense.eu/team/traian-abrudan/) - [Paolo Casari](https://dn6sense.eu/team/paolo-casari/) - [Joerg Widmer](https://dn6sense.eu/team/joerg-widmer/) - [Qing Zhang](https://dn6sense.eu/team/qing-zhang/) - DC8 Qing Zhang (KU Leuven) Qing Zhang is a doctoral candidate in the Networked Systems, Waves: Core Research and Engineering (WaveCore) group at the Department of Electrical Engineering (ESAT), Katholieke Universiteit Leuven. As part of the 6th Sense project, her research focuses on developing fusion techniques for multi-band channel observations, leveraging accurate estimation of multi-band - [Alexandra Lopes](https://dn6sense.eu/team/alexandra-lopes/) - Alexandra Lopes is a PhD researcher at the Embedded Systems Group of TU Delft, collaborating with the Radio Research Group at NOKIA Bell Labs, in Finland. With a background in Biomedical Engineering and a specialization in bio-radars from NOVA University of Lisbon, Alexandra has been contributing to projects in radiofrequency sensing and software development since - [Chengwei Huang](https://dn6sense.eu/team/chengwei-huang/) - Chengwei Huang is a Ph.D. Candidate in the Networked Systems group at Delft University of Technology. His research, conducted as part of the 6th Sense Project, focuses on autonomous robotic navigation using visible light communication (VLC). He is also working on developing sustainable drone systems by integrating solar energy, aiming to create fully autonomous, energy-efficient ## Categories - [Positions](https://dn6sense.eu/category/positions/) - [Filled positions](https://dn6sense.eu/category/positions/filled-positions/) - [Consortium](https://dn6sense.eu/category/consortium/) - [Beneficiaries](https://dn6sense.eu/category/consortium/beneficiaries/) - [Associated Partners](https://dn6sense.eu/category/consortium/associated-partners/) - [Work Packages](https://dn6sense.eu/category/work-packages/) - [Coordinator](https://dn6sense.eu/category/consortium/coordinator/) - [News](https://dn6sense.eu/category/news/) - [Events](https://dn6sense.eu/category/events/) - [Blog](https://dn6sense.eu/category/blog/) ## Categories - [Default](https://dn6sense.eu/gallery_cat/default/)