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Welcome to the Chair of Communication Engineering at the University of Siegen

In the Department of Electrical Engineering and Computer Science at Schools IV, we develop and research sustainable and energy-efficient solutions for wireless communication and sensor systems. Our work aims to design modern technologies for the Internet of Things (IoT) and industrial digitalization in an environmentally friendly, resource-saving and future-proof way.

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The Chair of Communication Engineering at the University of Siegen is dedicated to research and teaching in the field of sustainable and energy-efficient wireless communication and sensor systems.
The focus is on the development of modern technologies that meet the increasing demands of digital transformation in business and society - from energy-efficient data transmission to the resource-saving integration of IoT systems.

Our research activities combine basic research with application-oriented approaches and cover topics such as backscatter communication, near-field communication (NFC), wireless energy transmission and RF energy harvesting. The aim is to create innovative solutions for an environmentally friendly, networked future.

Our research profile

Development of wireless systems

Research at the Chair of Communication Engineering is divided into two central areas:

  1. Energy-efficient wireless communication and sensor systems
    This area deals with sustainable concepts for future wireless systems. The focus is on backscatter communication, near-field communication (NFC), wireless energy transmission and RF energy harvesting for the realization of battery-free, autonomous sensor and communication nodes for the Internet of Things (IoT) and industrial applications.
  2. Integrated high-frequency circuits for the low-power range
    Highly integrated RF and microwave circuits are developed here that are specially designed for energy-efficient applications. These include miniaturized antennas, transponders and adaptive circuit architectures that enable the sustainable implementation of modern communication technologies.

Research focus

  • Backscatter communication and passive RFID systems for the realization of extremely energy-efficient, battery-free sensors
  • Near-field communication (NFC) and wireless sensor networks for powerful and sustainable IoT applications
  • Wireless power transfer (WPT) for contactless power supply of sensor nodes
  • RF energy harvesting for autonomous power supply of IoT devices
  • Highly optimized analogue front ends for (ultra) low-power wireless communication and energy harvesting systems
  • Miniaturized antenna and transponder technologies for the optimization of passive and semi-passive sensor nodes
  • System-on-a-chip and system-in-package solutions to realize highly integrated communication systems with reduced material usage

 

Latest publications

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Journal article
2016

HF/UHF Dual Band RFID Transponders for an Information-Driven Public Transportation System

Conference paper
2016

Threshold Voltage Compensated RF-DC Power Converters in a 40nm CMOS Technology

Conference paper
2016

Statistical Analysis of the Power Delay Profile of a SIMO UHF Backscatter RFID Channel in an Engine Test Bed

Conference paper
2016

SDR Based RFID Reader for Passive Tag Localization Using Phase Difference of Arrival Techniques

Journal article
2016

SIMO UHF RFID Reader Using Sensor Fusion for Tag Localization in a Selected Environment

Journal article
2016

Passive RFID Sensor Tag Concept and Prototype Exploiting a Full Control of Amplitude and Phase of the Tag Signal

Conference paper
2016

Sensor Add-On for Batteryless UHF RFID Tags Enabling a Low Cost IoT Infrastructure

Conference paper
2015

Concept for a Security Aware Automatic Fare Collection System Using HF/UHF Dual Band RFID Transponders

Conference paper
2015

Wide-Band Dielectric Resonator Antennas for RF Energy Harvesting

Conference paper
2015

RF Voltage Limiters for Passive Differential UHF RFID Front-Ends in a 40nm CMOS Technology

Conference paper
2015

Measurement Based Indoor SIMO RFID Simulator for Tag Positioning

Conference paper
2015

A Secure Miniaturized Wireless Sensor Node for a Smart Home Demonstrator

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Partnership with NXP

Current Collaboration with NXP in RFID Research

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Associate member of The Center for Sensor Systems (ZESS)

Associate member of The Center for Sensor Systems (ZESS)

Jasmin Grosinger

Prof. Dr. techn. Jasmin Grosinger

Professor

Jasmin Grosinger is Full Professor of Communication Engineering at the University of Siegen, Germany (since October 2025). Her research focuses on sustainable wireless communication systems.

Profilbild Beata Koziol

Beata Koziol

Secretariat Research Group

Präsenzzeiten des Sekretariats am Hölderlin:

Mo-Do: 10:00-14:00 Uhr

Büro: Raum H-E 205

Profile picture Dabarati Dutta

Debarati Dutta

Research assistant
Account Picture

Adity Saha

Wissenschaftliche Mitarbeiterin
Profilbild Matthias Schneider

Dr. Matthias Schneider

Technical and Administrative Staff Member

Sprechstunde nach vorheriger Anmeldung.

Foto

Univ.-Prof. Dr. Christoph Ruland

Professor

Contact the Chair of Communications Engineering

Postal address

University of Siegen
Chair of Communications Engineering
Schools IV
Hölderlinstr. 3
57068 Siegen

Visitor address

University of Siegen
Chair of Communications Engineering
Schools IV

H-E 205 Level 2
Hölderlinstr. 3
57068 Siegen

Secretariat

Please contact Beata Koziol.