2021

[1]
G. Notzon, „Breitbandiges Zeitbereichsreflektometrie-System auf Basis binär codierter Signale“, Shaker Verlag, Düren, 2021.

2020

[1]
G. Notzon, R. Storch, T. Musch, und M. Vogt, „A reflection measurement system with high accuracy using binary coded signals“, IEEE transactions on instrumentation and measurement / Institute of Electrical and Electronics Engineers, Bd. 69, Nr. 10, S. 7825–7836, Apr. 2020, doi: 10.1109/tim.2020.2985139.

2019

[1]
G. Notzon, R. Storch, T. Musch, und M. Vogt, „A low-noise and flexible FPGA-based binary signal measurement generator“, International journal of microwave and wireless technologies, Bd. 11, Nr. 5/6, S. 447–455, 2019, doi: 10.1017/s1759078719000254.

2018

[1]
G. Notzon, R. Storch, T. Musch, und M. Vogt, „A simulator for the performance investigation of nonideal pseudo-random binary coded signals“, in 2018 International Conference on Electromagnetics in Advanced Applications (ICEAA 2018), Cartagena de Indias, 2018, S. 250–253. doi: 10.1109/iceaa.2018.8520536.
[2]
G. Notzon, R. Storch, T. Musch, und M. Vogt, „An FPGA-based measurement generator for cyclically shifted binary signals“, in 2018 48th European Microwave Conference (EuMC 2018), Madrid, 2018, S. 922–925. doi: 10.23919/eumc.2018.8541748.
[3]
S. Vogt u. a., „A newly developed mm-wave sensor for detecting plaques of arterial vessels“, The thoracic and cardiovascular surgeon, Bd. 66, Nr. 1, S. 91–98, 2018, doi: 10.1055/s-0037-1606318.
[4]
K. Stark u. a., „High frequency plasma enhancement of a conventional spark ignition system to extend the operating range of a modern mass-production engine“, in Ignition systems for gasoline engines, Berlin, 2018, S. 371–384.

2017

[1]
G. Notzon, L. Polzin, D. Falkenberg, R. Storch, T. Musch, und M. Vogt, „An M-sequence reflection measurement system“, in 2017 IEEE Asia Pacific Microwave Conference, Kuala Lumpur, 2017, S. 1171–1174. doi: 10.1109/apmc.2017.8251666.
[2]
G. Notzon, L. Polzin, R. Storch, T. Musch, und M. Vogt, „An M-sequence-based baseband network analyzer using a combination of hardware and software correlator“, in 47th European Microwave Conference (EuMC 2017), Nürnberg, 2017, S. 1195–1198. doi: 10.23919/eumc.2017.8231063.
[3]
G. Notzon, R. Storch, und M. Vogt, „Verfahren und Füllstandmessgerät zur Bestimmung des Füllstandes eines Mediums mittels Dauerstrich-Radarmessung“, 102017123185

2016

[1]
G. Notzon, T. Busch, M. Delden, und T. Musch, „A 500W high efficiency class-E power amplifier for heating a variable plasma load at 10MHz“, in 2016 German Microwave Conference GeMiC 2016, Bochum, 2016, S. 429–432. doi: 10.1109/gemic.2016.7461647.
[2]
G. Notzon, R. Storch, T. Musch, und M. Vogt, „Evaluation of concepts for network analysis with coded binary baseband signals“, in Book of abstracts, Kleinheubacher Tagung 2016, Miltenberg, 2016, S. 29. [Online]. Verfügbar unter: https://www.kh2016.de/KH2016_book_of_abstracts.pdf

2015

[1]
C. Baer, C. Schulz, G. Notzon, I. Rolfes, und T. Musch, „On the human blood permittivity: model parameters and substitution material for mmWave applications“, in 2015 IEEE MTT-S International Microwave Workshop Series on RF and Wireless Technologies for Biomedical and Healthcare Applications (IMWS-Bio 2015) , Taipeh, 2015, S. 30–31. doi: 10.1109/imws-bio.2015.7303760.
[2]
G. Notzon, C. Baer, T. Musch, C. Dahl, und I. Rolfes, „Conformal mm-wave antennas for catheter embedded atherosclerotic plaque sensors“, in 2015 European Microwave Conference (EuMC 2015), Paris, 2015, S. 825–828. doi: 10.1109/eumc.2015.7345891.

2013

[1]
C. Baer u. a., „A millimeter-wave based measuring method for the differentiation of atherosclerotic plaques“, in 2013 IEEE MTT-S International Microwave Workshop Series on RF and Wireless Technologies for Biomedical and Healthcare Applications (IMWS-Bio 2013) , Singapur, 2013, S. 43–46. doi: 10.1109/imws-bio.2013.6756167.

Nach oben

To Top