Terahertz-Light Field Camera Prototyp

Light-field cameras record both the brightness and direction of the incident light rays. This spatiodirectional information can be post-processed for a dynamic focal point adjustment and 3-D imaging. Light-field has traditionally been a domain of visible light computational imaging. Our chair is leading the development of light-field methodologies for the THz spectrum, bringing new foundational understanding and hardware capabilities for bridging the terahertz gap.

Currently, we are building the first ever THz light-field camera prototype - which consists of a 3x3 super-array of lens coupled 1k-pixel THz CMOS cameras - in a single package. The CMOS camera chip is presented in the International Solid-State Circuits Conference (ISSCC) 2021. The figure shows the prototype of the light field array. The prototype serves as the hardware platform for the development of light-field based real-time THz 3-D imaging techniques.

Preliminary work:



2020

3109.

Horn, Gesa; Schönefeld, Kathrin
AI for Future Mobility: What Amount of Willingness to Change Does a Society Need?
Proceedings of the 9th International Conference on Smart Cities and Green ICT Systems - Volume 1: SMARTGREENS, Page 38—43
Publisher: SciTePress
2020

ISBN: 978-989-758-418-3

3108.

Horn, Gesa; Schönefeld, Kathrin
AI for Future Mobility: What Amount of Willingness to Change Does a Society Need?
Proceedings of the 9th International Conference on Smart Cities and Green ICT Systems - Volume 1: SMARTGREENS, Page 38—43
Publisher: SciTePress
2020

ISBN: 978-989-758-418-3

3107.

Horn, Gesa; Schönefeld, Kathrin
AI for Future Mobility: What Amount of Willingness to Change Does a Society Need?
Proceedings of the 9th International Conference on Smart Cities and Green ICT Systems - Volume 1: SMARTGREENS, Page 38—43
Publisher: SciTePress
2020

ISBN: 978-989-758-418-3

3106.

Tückmantel, Christian; Kalita, Utpal; Haeger, Tobias; Theisen, Manuel; Pfeiffer, Ullrich; Riedl, Thomas
Amorphous Indium-Gallium-Zinc-Oxide TFTs Patterned by Self-Aligned Photolithography Overcoming the GHz Threshold
IEEE Electron Device Letters, 41 (12) :1786-1789
2020
ISSN: 1558-0563

3105.

Ferreira, João; Callou, Gustavo; Maciel, Paulo; Tutsch, Dietmar
An Algorithm to Optimize the Energy Distribution of Data Center Electrical Infrastructures
International Journal of Grid and Utility Computing, 11 (3) :419--433
2020
Publisher: Inderscience Publishers

3104.

Ferreira, João; Callou, Gustavo; Maciel, Paulo; Tutsch, Dietmar
An Algorithm to Optimize the Energy Distribution of Data Center Electrical Infrastructures
International Journal of Grid and Utility Computing, 11 (3) :419—433
2020
Publisher: Inderscience Publishers

3103.

Callou, Gustavo; Maciel, Paulo; Tutsch, Dietmar
An Algorithm to Optimize the Energy Distribution of Data Center Electrical Infrastructures
, International Journal of Grid and Utility ComputingVolume11, Page 419--433
Publisher: Inderscience Publishers
2020

3102.

Callou, Gustavo; Maciel, Paulo; Tutsch, Dietmar
An Algorithm to Optimize the Energy Distribution of Data Center Electrical Infrastructures
, International Journal of Grid and Utility ComputingVolume11, Page 419--433
Publisher: {Inderscience Publishers}
2020

3101.

Bellgardt, Martin; Scheiderer, Christian; Kuhlen, Torsten W.
An Immersive Node-Link Visualization of Artificial Neural Networks for Machine Learning Experts
2020 IEEE International Conference on Artificial Intelligence and Virtual Reality (AIVR), Page 33—36
Publisher: IEEE
2020

ISBN: 978-1-7281-7463-1

3100.

Bellgardt, Martin; Scheiderer, Christian; Kuhlen, Torsten W.
An Immersive Node-Link Visualization of Artificial Neural Networks for Machine Learning Experts
2020 IEEE International Conference on Artificial Intelligence and Virtual Reality (AIVR), Page 33—36
Publisher: IEEE
2020

ISBN: 978-1-7281-7463-1

3099.

Bellgardt, Martin; Scheiderer, Christian; Kuhlen, Torsten W.
An Immersive Node-Link Visualization of Artificial Neural Networks for Machine Learning Experts
2020 IEEE International Conference on Artificial Intelligence and Virtual Reality (AIVR), Page 33—36
Publisher: IEEE
2020

ISBN: 978-1-7281-7463-1

3098.

Bellgardt, Martin; Scheiderer, Christian; Kuhlen, Torsten W.
An Immersive Node-Link Visualization of Artificial Neural Networks for Machine Learning Experts
2020 IEEE International Conference on Artificial Intelligence and Virtual Reality (AIVR), Page 33—36
Publisher: IEEE
2020

ISBN: 978-1-7281-7463-1

3097.

Bellgardt, Martin; Scheiderer, Christian; Kuhlen, Torsten W.
An Immersive Node-Link Visualization of Artificial Neural Networks for Machine Learning Experts
2020 IEEE International Conference on Artificial Intelligence and Virtual Reality (AIVR), Page 33—36
Publisher: IEEE
2020

ISBN: 978-1-7281-7463-1

3096.

Düssel, Roman; Tutsch, Dietmar
Anode Effect Prediction in Hall-Héroult Cells Using Time Series Characteristics
Document Number: 24
Publisher: MDPI
Applied Science, MDPI
December 2020

3095.

Kremser, Ron; Grabowski, Niclas; Düssel, Roman; Mulder, Albert; Tutsch, Dietmar
Anode Effect Prediction in Hall-Héroult Cells Using Time Series Characteristics
Document Number: 24
Publisher: MDPI
Applied Science, MDPI
December 2020

3094.

Tutsch, Dietmar
Anode Effect Prediction in Hall-Héroult Cells Using Time Series Characteristics
Applied Science, MDPI, 10 (24) :https://doi.org/10.3390/app10249050
December 2020
Publisher: MDPI

3093.

Tutsch, Dietmar
Anode Effect Prediction in Hall-Héroult Cells Using Time Series Characteristics
, Applied Science, MDPI, Schweiz, Dezember 2020Volume10, Page https://doi.org/10.3390/app10249050
Publisher: MDPI
2020

3092.


Applied Science, MDPI, Schweiz, Dezember 2020
Publisher: MDPI
2020

3091.

Jaeger, Jan-Gerrit; Brandau, Christoph; Tutsch, Dietmar
Automated Testbed for Various Indoor Position Systems and Sensors for Evaluation and Improvement
Page 81--88
Publisher: Springer-Vieweg
November 2020

3090.

Jaeger, Jan-Gerrit; Brandau, Christoph; Tutsch, Dietmar
Automated Testbed for Various Indoor Position Systems and Sensors for Evaluation and Improvement
Echtzeit 2020, Online, Deutschland, GI, Page 81—88
Publisher: Springer-Vieweg
November 2020

3089.

Jaeger, Jan-Gerrit; Brandau, Christoph; Tutsch, Dietmar
Automated Testbed for Various Indoor Position Systems and Sensors for Evaluation and Improvement
Echtzeit 2020, Online, Deutschland, GI, Page 81--88
Publisher: Springer-Vieweg
November 2020

3088.

Jaeger, Jan-Gerrit; Brandau, Christoph; Tutsch, Dietmar
Automated Testbed for Various Indoor Position Systems and Sensors for Evaluation and Improvement
Echtzeit 2020, Online, Deutschland, GI, Page 81--88
Publisher: Springer-ViewegI
2020

3087.

Niewiadomski, Karol; Tutsch, Dietmar; Pursche, Thomas
Benefits of Low-Power Improvements at Circuit Level on Specific FPGA Architectures
IEEE International Conference on Consumer Electronics (ICCE 2020), Las Vegas, USA, Page 1--6
Publisher: IEEE
2020

3086.

Niewiadomski, Karol; Tutsch, Dietmar; Pursche, Thomas
Benefits of Low-Power Improvements at Circuit Level on Specific FPGA Architectures
IEEE International Conference on Consumer Electronics (ICCE 2020), Las Vegas, USA, Page 1--6
Publisher: IEEE
January 2020

3085.

Niewiadomski, Karol; Tutsch, Dietmar; Pursche, Thomas
Benefits of Low-Power Improvements at Circuit Level on Specific FPGA Architectures
IEEE International Conference on Consumer Electronics (ICCE 2020), Las Vegas, USA, Page 1—6
Publisher: IEEE
January 2020