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Bustince, Eyke Hüllermeier, R. Mesiar, N.R. Pal, and A. Pradera. “Overlap Indices: Construction of and Application of Interpolative Fuzzy Systems.” <i>IEEE Transactions on Fuzzy Systems</i> 23, no. 4 (2015): 1259–73.","ama":"Garcia-Jimenez S, Bustince U, Hüllermeier E, Mesiar R, Pal NR, Pradera A. Overlap Indices: Construction of and Application of Interpolative Fuzzy Systems. <i>IEEE Transactions on Fuzzy Systems</i>. 2015;23(4):1259-1273.","short":"S. Garcia-Jimenez, U. Bustince, E. Hüllermeier, R. Mesiar, N.R. Pal, A. Pradera, IEEE Transactions on Fuzzy Systems 23 (2015) 1259–1273.","bibtex":"@article{Garcia-Jimenez_Bustince_Hüllermeier_Mesiar_Pal_Pradera_2015, title={Overlap Indices: Construction of and Application of Interpolative Fuzzy Systems}, volume={23}, number={4}, journal={IEEE Transactions on Fuzzy Systems}, author={Garcia-Jimenez, S. and Bustince, U. and Hüllermeier, Eyke and Mesiar, R. and Pal, N.R. and Pradera, A.}, year={2015}, pages={1259–1273} }","mla":"Garcia-Jimenez, S., et al. “Overlap Indices: Construction of and Application of Interpolative Fuzzy Systems.” <i>IEEE Transactions on Fuzzy Systems</i>, vol. 23, no. 4, 2015, pp. 1259–73.","apa":"Garcia-Jimenez, S., Bustince, U., Hüllermeier, E., Mesiar, R., Pal, N. R., &#38; Pradera, A. (2015). Overlap Indices: Construction of and Application of Interpolative Fuzzy Systems. <i>IEEE Transactions on Fuzzy Systems</i>, <i>23</i>(4), 1259–1273.","ieee":"S. Garcia-Jimenez, U. Bustince, E. Hüllermeier, R. Mesiar, N. R. Pal, and A. Pradera, “Overlap Indices: Construction of and Application of Interpolative Fuzzy Systems,” <i>IEEE Transactions on Fuzzy Systems</i>, vol. 23, no. 4, pp. 1259–1273, 2015."},"date_created":"2019-06-26T13:17:46Z","type":"journal_article","department":[{"_id":"34"},{"_id":"7"},{"_id":"355"}]},{"department":[{"_id":"34"},{"_id":"7"},{"_id":"355"}],"type":"journal_article","date_created":"2019-06-26T13:20:43Z","citation":{"ama":"Senge R, Hüllermeier E. Fast Fuzzy Pattern Tree Learning of Classification. <i>IEEE Transactions on Fuzzy Systems</i>. 2015;23(6):2024-2033.","bibtex":"@article{Senge_Hüllermeier_2015, title={Fast Fuzzy Pattern Tree Learning of Classification}, volume={23}, number={6}, journal={IEEE Transactions on Fuzzy Systems}, author={Senge, Robin and Hüllermeier, Eyke}, year={2015}, pages={2024–2033} }","mla":"Senge, Robin, and Eyke Hüllermeier. “Fast Fuzzy Pattern Tree Learning of Classification.” <i>IEEE Transactions on Fuzzy Systems</i>, vol. 23, no. 6, 2015, pp. 2024–33.","short":"R. Senge, E. Hüllermeier, IEEE Transactions on Fuzzy Systems 23 (2015) 2024–2033.","chicago":"Senge, Robin, and Eyke Hüllermeier. “Fast Fuzzy Pattern Tree Learning of Classification.” <i>IEEE Transactions on Fuzzy Systems</i> 23, no. 6 (2015): 2024–33.","apa":"Senge, R., &#38; Hüllermeier, E. (2015). Fast Fuzzy Pattern Tree Learning of Classification. <i>IEEE Transactions on Fuzzy Systems</i>, <i>23</i>(6), 2024–2033.","ieee":"R. Senge and E. Hüllermeier, “Fast Fuzzy Pattern Tree Learning of Classification,” <i>IEEE Transactions on Fuzzy Systems</i>, vol. 23, no. 6, pp. 2024–2033, 2015."},"issue":"6","publication":"IEEE Transactions on Fuzzy Systems","volume":23,"user_id":"49109","language":[{"iso":"eng"}],"_id":"10324","page":"2024-2033","intvolume":"        23","date_updated":"2022-01-06T06:50:36Z","author":[{"last_name":"Senge","first_name":"Robin","full_name":"Senge, Robin"},{"id":"48129","last_name":"Hüllermeier","first_name":"Eyke","full_name":"Hüllermeier, Eyke"}],"status":"public","year":"2015","title":"Fast Fuzzy Pattern Tree Learning of Classification"},{"type":"conference","department":[{"_id":"58"}],"place":"Montreal, Canada","date_created":"2021-09-14T07:06:28Z","related_material":{"link":[{"relation":"confirmation","url":"https://ieeexplore.ieee.org/document/7324520"}]},"abstract":[{"lang":"eng","text":"Terahertz frequency band of 0.06 - 10 THz is especially interesting for ultra-high-speed wireless communication to achieve data rates of 100 Gbps or higher. To accommodate this demand, advanced terahertz signal processing techniques need to be investigated. Parallel Sequence Spread Spectrum (PSSS) is a physical layer (PHY) baseband technology that seems to be suited for being used for ultra-high speed wireless communication since the receiver architecture is especially simple and can be implemented almost completely in analog hardware. In this paper, a PSSS modulated signal at a chip rate of 20 Gcps with a spectral efficiency of (only) 1 bit/s/Hz is transmitted using a linearity limited 240 GHz wireless frontend. PSSS transceiver models are realized offline in MATLAB/Simulink. The PSSS transmitter generates the PSSS modulated symbols that are loaded onto an Arbitrary Waveform generator (AWG) and then transmitted using the available 240 GHz wireless frontend. A Digital Storage Oscilloscope (DSO) samples and stores the received signal. The PSSS receiver performs synchronization, channel estimation and demodulation. For a coded data rate of 20 Gbps, an eye opening of 40% and a BER of 5.4·10 -5 has been measured. These results are highly promising to achieve data rates of up to 100 Gbps with PSSS modulation using a RF-frontend having higher linear operating range and thus allowing increasing the bandwidth efficiency to 4 b/s/Hz."}],"publication":"ICUWB 2015","citation":{"ieee":"K. KrishneGowda, T. Messinger, A. Wolf, R. Kraemer, I. Kallfass, and C. Scheytt, “Towards 100 Gbps Wireless Communication in THz Band with PSSS Modulation: A Promising Hardware in the Loop Experiment,” 2015, doi: <a href=\"https://doi.org/10.1109/ICUWB.2015.7324520\">10.1109/ICUWB.2015.7324520</a>.","apa":"KrishneGowda, K., Messinger, T., Wolf, A., Kraemer, R., Kallfass, I., &#38; Scheytt, C. (2015). Towards 100 Gbps Wireless Communication in THz Band with PSSS Modulation: A Promising Hardware in the Loop Experiment. <i>ICUWB 2015</i>. <a href=\"https://doi.org/10.1109/ICUWB.2015.7324520\">https://doi.org/10.1109/ICUWB.2015.7324520</a>","short":"K. KrishneGowda, T. Messinger, A. Wolf, R. Kraemer, I. Kallfass, C. Scheytt, in: ICUWB 2015, Montreal, Canada, 2015.","chicago":"KrishneGowda, Karthik, Tobias  Messinger, Andreas Wolf, Rolf Kraemer, Ingmar Kallfass, and Christoph Scheytt. “Towards 100 Gbps Wireless Communication in THz Band with PSSS Modulation: A Promising Hardware in the Loop Experiment.” In <i>ICUWB 2015</i>. Montreal, Canada, 2015. <a href=\"https://doi.org/10.1109/ICUWB.2015.7324520\">https://doi.org/10.1109/ICUWB.2015.7324520</a>.","mla":"KrishneGowda, Karthik, et al. “Towards 100 Gbps Wireless Communication in THz Band with PSSS Modulation: A Promising Hardware in the Loop Experiment.” <i>ICUWB 2015</i>, 2015, doi:<a href=\"https://doi.org/10.1109/ICUWB.2015.7324520\">10.1109/ICUWB.2015.7324520</a>.","bibtex":"@inproceedings{KrishneGowda_Messinger_Wolf_Kraemer_Kallfass_Scheytt_2015, place={Montreal, Canada}, title={Towards 100 Gbps Wireless Communication in THz Band with PSSS Modulation: A Promising Hardware in the Loop Experiment}, DOI={<a href=\"https://doi.org/10.1109/ICUWB.2015.7324520\">10.1109/ICUWB.2015.7324520</a>}, booktitle={ICUWB 2015}, author={KrishneGowda, Karthik and Messinger, Tobias  and Wolf, Andreas and Kraemer, Rolf and Kallfass, Ingmar and Scheytt, Christoph}, year={2015} }","ama":"KrishneGowda K, Messinger T, Wolf A, Kraemer R, Kallfass I, Scheytt C. Towards 100 Gbps Wireless Communication in THz Band with PSSS Modulation: A Promising Hardware in the Loop Experiment. In: <i>ICUWB 2015</i>. ; 2015. doi:<a href=\"https://doi.org/10.1109/ICUWB.2015.7324520\">10.1109/ICUWB.2015.7324520</a>"},"doi":"10.1109/ICUWB.2015.7324520","user_id":"15931","_id":"24287","language":[{"iso":"eng"}],"date_updated":"2022-02-17T09:43:32Z","status":"public","year":"2015","title":"Towards 100 Gbps Wireless Communication in THz Band with PSSS Modulation: A Promising Hardware in the Loop Experiment","conference":{"end_date":"2015.10.07","start_date":"2015.10.04"},"author":[{"full_name":"KrishneGowda, Karthik","last_name":"KrishneGowda","first_name":"Karthik"},{"full_name":"Messinger, Tobias ","first_name":"Tobias ","last_name":"Messinger"},{"last_name":"Wolf","first_name":"Andreas","full_name":"Wolf, Andreas"},{"first_name":"Rolf","last_name":"Kraemer","full_name":"Kraemer, Rolf"},{"first_name":"Ingmar","last_name":"Kallfass","full_name":"Kallfass, Ingmar"},{"full_name":"Scheytt, Christoph","last_name":"Scheytt","first_name":"Christoph","id":"37144"}],"publication_identifier":{"eisbn":["978-1-4673-6555-0"]}},{"language":[{"iso":"eng"}],"_id":"24286","user_id":"15931","year":"2015","status":"public","title":"Shifting the Analog-Digital Boundary in Signal Processing: Should We Use Mixed-Signal \"Approximate\" Computing?","author":[{"full_name":"Scheytt, Christoph","last_name":"Scheytt","first_name":"Christoph","id":"37144"},{"last_name":"Javed","first_name":"Abdul Rehman","full_name":"Javed, Abdul Rehman"}],"conference":{"end_date":"2015.10.16","start_date":"2015.10.15","name":"Workshop on Approximate Computing","location":"Paderborn"},"date_updated":"2022-02-17T09:41:04Z","date_created":"2021-09-14T07:06:27Z","place":"Paderborn, Germany","type":"conference","department":[{"_id":"58"}],"publication":"Workshop on Approximate Computing","citation":{"bibtex":"@inproceedings{Scheytt_Javed_2015, place={Paderborn, Germany}, title={Shifting the Analog-Digital Boundary in Signal Processing: Should We Use Mixed-Signal “Approximate” Computing?}, booktitle={Workshop on Approximate Computing}, author={Scheytt, Christoph and Javed, Abdul Rehman}, year={2015} }","ama":"Scheytt C, Javed AR. Shifting the Analog-Digital Boundary in Signal Processing: Should We Use Mixed-Signal “Approximate” Computing? In: <i>Workshop on Approximate Computing</i>. ; 2015.","mla":"Scheytt, Christoph, and Abdul Rehman Javed. “Shifting the Analog-Digital Boundary in Signal Processing: Should We Use Mixed-Signal ‘Approximate’ Computing?” <i>Workshop on Approximate Computing</i>, 2015.","chicago":"Scheytt, Christoph, and Abdul Rehman Javed. “Shifting the Analog-Digital Boundary in Signal Processing: Should We Use Mixed-Signal ‘Approximate’ Computing?” In <i>Workshop on Approximate Computing</i>. Paderborn, Germany, 2015.","short":"C. Scheytt, A.R. Javed, in: Workshop on Approximate Computing, Paderborn, Germany, 2015.","ieee":"C. Scheytt and A. R. Javed, “Shifting the Analog-Digital Boundary in Signal Processing: Should We Use Mixed-Signal ‘Approximate’ Computing?,” presented at the Workshop on Approximate Computing, Paderborn, 2015.","apa":"Scheytt, C., &#38; Javed, A. R. (2015). Shifting the Analog-Digital Boundary in Signal Processing: Should We Use Mixed-Signal “Approximate” Computing? <i>Workshop on Approximate Computing</i>. Workshop on Approximate Computing, Paderborn."},"related_material":{"link":[{"url":"https://approximate.uni-paderborn.de/2015/pages/general-info/welcome.php","relation":"confirmation"}]}},{"citation":{"chicago":"Adelt, Peer. <i>Analyse von Ausführungszeiten Durch Integration Einer Statischen WCET-Analyse Mit Einer Dynamischen Befehlssatzsimulation Am Beispiel Der TriCore-Architektur</i>. Universität Paderborn, Fakultät EIM, 2015.","short":"P. Adelt, Analyse von Ausführungszeiten Durch Integration Einer Statischen WCET-Analyse Mit Einer Dynamischen Befehlssatzsimulation Am Beispiel Der TriCore-Architektur, Universität Paderborn, Fakultät EIM, 2015.","ieee":"P. Adelt, <i>Analyse von Ausführungszeiten durch Integration einer statischen WCET-Analyse mit einer dynamischen Befehlssatzsimulation am Beispiel der TriCore-Architektur</i>. Universität Paderborn, Fakultät EIM, 2015.","apa":"Adelt, P. (2015). <i>Analyse von Ausführungszeiten durch Integration einer statischen WCET-Analyse mit einer dynamischen Befehlssatzsimulation am Beispiel der TriCore-Architektur</i>. Universität Paderborn, Fakultät EIM.","bibtex":"@book{Adelt_2015, title={Analyse von Ausführungszeiten durch Integration einer statischen WCET-Analyse mit einer dynamischen Befehlssatzsimulation am Beispiel der TriCore-Architektur}, publisher={Universität Paderborn, Fakultät EIM}, author={Adelt, Peer}, year={2015} }","ama":"Adelt P. <i>Analyse von Ausführungszeiten Durch Integration Einer Statischen WCET-Analyse Mit Einer Dynamischen Befehlssatzsimulation Am Beispiel Der TriCore-Architektur</i>. Universität Paderborn, Fakultät EIM; 2015.","mla":"Adelt, Peer. <i>Analyse von Ausführungszeiten Durch Integration Einer Statischen WCET-Analyse Mit Einer Dynamischen Befehlssatzsimulation Am Beispiel Der TriCore-Architektur</i>. Universität Paderborn, Fakultät EIM, 2015."},"type":"mastersthesis","department":[{"_id":"58"}],"date_created":"2021-09-14T07:06:30Z","date_updated":"2022-02-17T09:57:44Z","year":"2015","title":"Analyse von Ausführungszeiten durch Integration einer statischen WCET-Analyse mit einer dynamischen Befehlssatzsimulation am Beispiel der TriCore-Architektur","status":"public","author":[{"full_name":"Adelt, Peer","last_name":"Adelt","first_name":"Peer","id":"5603"}],"user_id":"15931","language":[{"iso":"eng"}],"_id":"24288","publisher":"Universität Paderborn, Fakultät EIM"},{"place":"Palais dés Congres, Paris, France","date_created":"2021-09-14T07:06:33Z","type":"conference","department":[{"_id":"58"}],"publication":"European Microwave Week 2015","citation":{"ama":"Scherr S, Göttel B, Ayhan S, et al. Miniaturized 122 GHz ISM Band FMCW Radar with Micrometer Accuracy. In: <i>European Microwave Week 2015</i>. ; 2015. doi:<a href=\"https://doi.org/10.1109/EuRAD.2015.7346291\">10.1109/EuRAD.2015.7346291</a>","bibtex":"@inproceedings{Scherr_Göttel_Ayhan_Bhutani_Pauli_Winkler_Scheytt_Zwick_2015, place={Palais dés Congres, Paris, France}, title={Miniaturized 122 GHz ISM Band FMCW Radar with Micrometer Accuracy}, DOI={<a href=\"https://doi.org/10.1109/EuRAD.2015.7346291\">10.1109/EuRAD.2015.7346291</a>}, booktitle={European Microwave Week 2015}, author={Scherr, Steffen and Göttel, Benjamin and Ayhan, Serdal and Bhutani, Akanksha and Pauli, Mario and Winkler, Wolfgang and Scheytt, Christoph and Zwick, Thomas}, year={2015} }","mla":"Scherr, Steffen, et al. “Miniaturized 122 GHz ISM Band FMCW Radar with Micrometer Accuracy.” <i>European Microwave Week 2015</i>, 2015, doi:<a href=\"https://doi.org/10.1109/EuRAD.2015.7346291\">10.1109/EuRAD.2015.7346291</a>.","short":"S. Scherr, B. Göttel, S. Ayhan, A. Bhutani, M. Pauli, W. Winkler, C. Scheytt, T. Zwick, in: European Microwave Week 2015, Palais dés Congres, Paris, France, 2015.","chicago":"Scherr, Steffen, Benjamin Göttel, Serdal Ayhan, Akanksha Bhutani, Mario Pauli, Wolfgang Winkler, Christoph Scheytt, and Thomas Zwick. “Miniaturized 122 GHz ISM Band FMCW Radar with Micrometer Accuracy.” In <i>European Microwave Week 2015</i>. Palais dés Congres, Paris, France, 2015. <a href=\"https://doi.org/10.1109/EuRAD.2015.7346291\">https://doi.org/10.1109/EuRAD.2015.7346291</a>.","apa":"Scherr, S., Göttel, B., Ayhan, S., Bhutani, A., Pauli, M., Winkler, W., Scheytt, C., &#38; Zwick, T. (2015). Miniaturized 122 GHz ISM Band FMCW Radar with Micrometer Accuracy. <i>European Microwave Week 2015</i>. <a href=\"https://doi.org/10.1109/EuRAD.2015.7346291\">https://doi.org/10.1109/EuRAD.2015.7346291</a>","ieee":"S. Scherr <i>et al.</i>, “Miniaturized 122 GHz ISM Band FMCW Radar with Micrometer Accuracy,” 2015, doi: <a href=\"https://doi.org/10.1109/EuRAD.2015.7346291\">10.1109/EuRAD.2015.7346291</a>."},"related_material":{"link":[{"url":"https://ieeexplore.ieee.org/document/7346291","relation":"confirmation"}]},"abstract":[{"lang":"eng","text":"In this paper, a miniaturized 122 GHz ISM band FMCW radar is used to achieve micrometer accuracy. The radar consists of a SiGe single chip radar sensor and LCP off-chip antennas. The antennas are integrated in a QFN package. To increase the gain of the radar, an additional lens is used. A combined frequency and phase evaluation algorithm provides micrometer accuracy. The influence of the lens phase center on the beat frequency phase and hence, the overall accuracy is shown. Furthermore, accuracy limitations of the radar system over larger measurement distances are investigated. Accuracies of 200 μm and 2 μm are achieved over a distance of 1.9 m and 5 mm, respectively."}],"_id":"24291","language":[{"iso":"eng"}],"doi":"10.1109/EuRAD.2015.7346291","user_id":"15931","status":"public","year":"2015","title":"Miniaturized 122 GHz ISM Band FMCW Radar with Micrometer Accuracy","conference":{"start_date":"2015.09.09","end_date":"2015.09.11"},"publication_identifier":{"eisbn":["978-2-8748-7041-5"]},"author":[{"full_name":"Scherr, Steffen","first_name":"Steffen","last_name":"Scherr"},{"full_name":"Göttel, Benjamin","last_name":"Göttel","first_name":"Benjamin"},{"last_name":"Ayhan","first_name":"Serdal","full_name":"Ayhan, Serdal"},{"full_name":"Bhutani, Akanksha","first_name":"Akanksha","last_name":"Bhutani"},{"full_name":"Pauli, Mario","first_name":"Mario","last_name":"Pauli"},{"first_name":"Wolfgang","last_name":"Winkler","full_name":"Winkler, Wolfgang"},{"first_name":"Christoph","last_name":"Scheytt","full_name":"Scheytt, Christoph","id":"37144"},{"full_name":"Zwick, Thomas","last_name":"Zwick","first_name":"Thomas"}],"date_updated":"2022-02-17T10:23:00Z"},{"date_updated":"2022-02-17T10:08:53Z","author":[{"id":"16243","first_name":"Wolfgang","last_name":"Müller","full_name":"Müller, Wolfgang"},{"id":"30401","full_name":"Wu, Liang","first_name":"Liang","last_name":"Wu"},{"id":"37144","last_name":"Scheytt","first_name":"Christoph","full_name":"Scheytt, Christoph"},{"full_name":"Becker, Markus","first_name":"Markus","last_name":"Becker"},{"full_name":"Schoenberg, Sven","last_name":"Schoenberg","first_name":"Sven"}],"year":"2015","title":"On the Correlation of HW Faults and SW Errors","status":"public","editor":[{"full_name":"Mueller-Gritschneder, Daniel","first_name":"Daniel","last_name":"Mueller-Gritschneder"},{"full_name":"Müller, Wolfgang","first_name":"Wolfgang","last_name":"Müller"},{"full_name":"Mitra, Subhasish","first_name":"Subhasish","last_name":"Mitra"}],"user_id":"15931","language":[{"iso":"eng"}],"_id":"24289","citation":{"ieee":"W. Müller, L. Wu, C. Scheytt, M. Becker, and S. Schoenberg, “On the Correlation of HW Faults and SW Errors,” in <i>Proceedings of the 1st International Workshop on Resiliency in Embedded Electronic Systems (REES 2014)</i>, 2015.","apa":"Müller, W., Wu, L., Scheytt, C., Becker, M., &#38; Schoenberg, S. (2015). On the Correlation of HW Faults and SW Errors. In D. Mueller-Gritschneder, W. Müller, &#38; S. Mitra (Eds.), <i>Proceedings of the 1st International Workshop on Resiliency in Embedded Electronic Systems (REES 2014)</i>.","chicago":"Müller, Wolfgang, Liang Wu, Christoph Scheytt, Markus Becker, and Sven Schoenberg. “On the Correlation of HW Faults and SW Errors.” In <i>Proceedings of the 1st International Workshop on Resiliency in Embedded Electronic Systems (REES 2014)</i>, edited by Daniel Mueller-Gritschneder, Wolfgang Müller, and Subhasish Mitra. Amsterdam, Netherland, 2015.","short":"W. Müller, L. Wu, C. Scheytt, M. Becker, S. Schoenberg, in: D. Mueller-Gritschneder, W. Müller, S. Mitra (Eds.), Proceedings of the 1st International Workshop on Resiliency in Embedded Electronic Systems (REES 2014), Amsterdam, Netherland, 2015.","mla":"Müller, Wolfgang, et al. “On the Correlation of HW Faults and SW Errors.” <i>Proceedings of the 1st International Workshop on Resiliency in Embedded Electronic Systems (REES 2014)</i>, edited by Daniel Mueller-Gritschneder et al., 2015.","bibtex":"@inproceedings{Müller_Wu_Scheytt_Becker_Schoenberg_2015, place={Amsterdam, Netherland}, title={On the Correlation of HW Faults and SW Errors}, booktitle={Proceedings of the 1st International Workshop on Resiliency in Embedded Electronic Systems (REES 2014)}, author={Müller, Wolfgang and Wu, Liang and Scheytt, Christoph and Becker, Markus and Schoenberg, Sven}, editor={Mueller-Gritschneder, Daniel and Müller, Wolfgang and Mitra, Subhasish}, year={2015} }","ama":"Müller W, Wu L, Scheytt C, Becker M, Schoenberg S. On the Correlation of HW Faults and SW Errors. In: Mueller-Gritschneder D, Müller W, Mitra S, eds. <i>Proceedings of the 1st International Workshop on Resiliency in Embedded Electronic Systems (REES 2014)</i>. ; 2015."},"publication":"Proceedings of the 1st International Workshop on Resiliency in Embedded Electronic Systems (REES 2014)","department":[{"_id":"58"}],"type":"conference","date_created":"2021-09-14T07:06:31Z","place":"Amsterdam, Netherland"},{"user_id":"15931","volume":338,"_id":"24298","series_title":"Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn","language":[{"iso":"eng"}],"publisher":"Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn","date_updated":"2022-02-17T12:24:05Z","intvolume":"       338","title":"Integrated Planar Antenna Designs and Technologies for Millimeter-Wave Applications","year":"2015","status":"public","author":[{"full_name":"Wang, Ruoyu","last_name":"Wang","first_name":"Ruoyu"}],"type":"dissertation","department":[{"_id":"58"}],"date_created":"2021-09-14T07:06:42Z","abstract":[{"text":"This thesis investigates the design and realization of integrated planar antennas for \r\nmillimeter-wave applications. The state-of-the-art antenna integration and packaging \r\ntechnologies are extensively studied, and an antenna design flow is proposed. \r\n \r\nA  number  of  integrated  antenna  designs  by  applying  different  integration  approaches  and \r\ntechnologies,  i.e.  on  printed  circuit  board  (PCB),  on-chip  and  in  Benzocyclobutene  (BCB) \r\nabove-wafer process, are presented. The designs target not only high performance, but also \r\nthe practical considerations of low-cost, feasibility, better reliability, and  good reproducibility. \r\nThey cover the industrial, medical, and scientific (ISM) bands of 60 GHz, 122 GHz, and 245 \r\nGHz  in  the  millimeter-wave  range  with  outstanding  performance  in  a  low-cost  fashion  by \r\napplying  innovative,  appropriate  integration  methods  and  sophisticated  design.  By  applying \r\nthe  localized  backside  etching  (LBE)  process  the  presented  on-chip  antennas  achieve \r\nmeasured peak gains of 6–8.4 dBi for above 100 GHz applications with simulated efficiencies \r\nof 54–75%. These figures are comparable to that of on-board or in-package antennas. To the \r\nbest of my knowledge, the achieved gain of 7.5–8.4 dBi in the band of 124–134 GHz for the \r\n130 GHz on-chip double folded dipole antenna is the highest reported result to date for planar \r\non-chip antennas based on low-resistivity silicon technologies. \r\n \r\nSystem  demonstrators  with  integrated  antennas  are  realized  and  measured.  The  60  GHz \r\ndemonstrator with on-PCB differential bunny-ear antenna and a novel bond-wire \r\ncompensation  scheme  achieves  a  data  rate  of  3.6  Gbit/s  over  a  15-meter  distance,  which \r\nwas  the  best  reported  analog  front-end  without  beamforming  function  in  silicon  technology \r\nregarding  both  the  data  rate  and  transmission  distance  at  the  time  of  its  publication.  A  245 \r\nGHz single-channel transmitter and a single-channel receiver with integrated on-chip \r\nantennas are also demonstrated. An effective isotropic radiated power (EIRP) of 7–8 dBm is \r\nachieved  for  the  transmitter,  which  is  the  highest  reported  value  at  245  GHz  for  a  SiGe \r\ntransmitter  with  a  single  antenna  so  far.  Furthermore,  the  receiver  has  the  highest  reported \r\nintegration level for any 245 GHz SiGe receiver. A 245 GHz 4-channel-transmitter array with \r\nintegrated  on-chip  antenna  array  is  also  realized  to  achieve  spatial  power  combining,  which \r\noffers 11 dB higher EIRP than a single-channel transmitter. \r\n \r\nFrom the presented results of the thesis it is feasible to realize high performance integrated \r\nplanar antennas in the entire millimeter-wave range and beyond in a cost-effective fashion. ","lang":"eng"}],"related_material":{"link":[{"relation":"confirmation","url":"https://digital.ub.uni-paderborn.de/urn/urn:nbn:de:hbz:466:2-15420"}]},"citation":{"ama":"Wang R. <i>Integrated Planar Antenna Designs and Technologies for Millimeter-Wave Applications</i>. Vol 338. Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn; 2015.","bibtex":"@book{Wang_2015, series={Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn}, title={Integrated Planar Antenna Designs and Technologies for Millimeter-Wave Applications}, volume={338}, publisher={Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn}, author={Wang, Ruoyu}, year={2015}, collection={Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn} }","mla":"Wang, Ruoyu. <i>Integrated Planar Antenna Designs and Technologies for Millimeter-Wave Applications</i>. Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn, 2015.","short":"R. Wang, Integrated Planar Antenna Designs and Technologies for Millimeter-Wave Applications, Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn, 2015.","chicago":"Wang, Ruoyu. <i>Integrated Planar Antenna Designs and Technologies for Millimeter-Wave Applications</i>. Vol. 338. Verlagsschriftenreihe Des Heinz Nixdorf Instituts, Paderborn. Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn, 2015.","apa":"Wang, R. (2015). <i>Integrated Planar Antenna Designs and Technologies for Millimeter-Wave Applications</i> (Vol. 338). Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn.","ieee":"R. Wang, <i>Integrated Planar Antenna Designs and Technologies for Millimeter-Wave Applications</i>, vol. 338. Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn, 2015."}},{"publisher":"IEEE","_id":"24294","page":"1-4","user_id":"15931","conference":{"end_date":"2015.04.15","start_date":"2015.04.13"},"status":"public","place":"Cacoa Beach, FL, USA","citation":{"mla":"Javed, Abdul Rehman, et al. “System Design Considerations for a PSSS Transceiver for 100Gbps Wireless Communication with Emphasis on Mixed Signal Implementation.” <i>Wireless and Microwave Technology Conference (WAMICON)</i>, IEEE, 2015, pp. 1–4, doi:<a href=\"https://doi.org/10.1109/WAMICON.2015.7120419\">10.1109/WAMICON.2015.7120419</a>.","bibtex":"@inproceedings{Javed_Scheytt_KrishneGowda_Kraemer_2015, place={Cacoa Beach, FL, USA}, title={System Design Considerations for a PSSS transceiver for 100Gbps wireless communication with emphasis on mixed Signal implementation}, DOI={<a href=\"https://doi.org/10.1109/WAMICON.2015.7120419\">10.1109/WAMICON.2015.7120419</a>}, booktitle={Wireless and Microwave Technology Conference (WAMICON)}, publisher={IEEE}, author={Javed, Abdul Rehman and Scheytt, Christoph and KrishneGowda, Karthik and Kraemer, Rolf}, year={2015}, pages={1–4} }","ama":"Javed AR, Scheytt C, KrishneGowda K, Kraemer R. System Design Considerations for a PSSS transceiver for 100Gbps wireless communication with emphasis on mixed Signal implementation. In: <i>Wireless and Microwave Technology Conference (WAMICON)</i>. IEEE; 2015:1-4. doi:<a href=\"https://doi.org/10.1109/WAMICON.2015.7120419\">10.1109/WAMICON.2015.7120419</a>","ieee":"A. R. Javed, C. Scheytt, K. KrishneGowda, and R. Kraemer, “System Design Considerations for a PSSS transceiver for 100Gbps wireless communication with emphasis on mixed Signal implementation,” in <i>Wireless and Microwave Technology Conference (WAMICON)</i>, 2015, pp. 1–4, doi: <a href=\"https://doi.org/10.1109/WAMICON.2015.7120419\">10.1109/WAMICON.2015.7120419</a>.","apa":"Javed, A. R., Scheytt, C., KrishneGowda, K., &#38; Kraemer, R. (2015). System Design Considerations for a PSSS transceiver for 100Gbps wireless communication with emphasis on mixed Signal implementation. <i>Wireless and Microwave Technology Conference (WAMICON)</i>, 1–4. <a href=\"https://doi.org/10.1109/WAMICON.2015.7120419\">https://doi.org/10.1109/WAMICON.2015.7120419</a>","chicago":"Javed, Abdul Rehman, Christoph Scheytt, Karthik KrishneGowda, and Rolf Kraemer. “System Design Considerations for a PSSS Transceiver for 100Gbps Wireless Communication with Emphasis on Mixed Signal Implementation.” In <i>Wireless and Microwave Technology Conference (WAMICON)</i>, 1–4. Cacoa Beach, FL, USA: IEEE, 2015. <a href=\"https://doi.org/10.1109/WAMICON.2015.7120419\">https://doi.org/10.1109/WAMICON.2015.7120419</a>.","short":"A.R. Javed, C. Scheytt, K. KrishneGowda, R. Kraemer, in: Wireless and Microwave Technology Conference (WAMICON), IEEE, Cacoa Beach, FL, USA, 2015, pp. 1–4."},"language":[{"iso":"eng"}],"doi":"10.1109/WAMICON.2015.7120419","author":[{"full_name":"Javed, Abdul Rehman","last_name":"Javed","first_name":"Abdul Rehman"},{"first_name":"Christoph","last_name":"Scheytt","full_name":"Scheytt, Christoph","id":"37144"},{"first_name":"Karthik","last_name":"KrishneGowda","full_name":"KrishneGowda, Karthik"},{"full_name":"Kraemer, Rolf","last_name":"Kraemer","first_name":"Rolf"}],"publication_identifier":{"eisbn":["978-1-4799-7521-1"]},"year":"2015","title":"System Design Considerations for a PSSS transceiver for 100Gbps wireless communication with emphasis on mixed Signal implementation","date_updated":"2022-02-17T12:07:38Z","date_created":"2021-09-14T07:06:37Z","department":[{"_id":"58"}],"type":"conference","publication":"Wireless and Microwave Technology Conference (WAMICON)","related_material":{"link":[{"url":"https://ieeexplore.ieee.org/document/7120419","relation":"confirmation"}]},"abstract":[{"lang":"eng","text":"Parallel Sequence Spread Spectrum (PSSS) is a physical layer (PHY) baseband technology which is gaining interest for both wireless and wired multi-gigabit communication systems. PSSS is well suited for mixed signal transceiver implementation including channel equalization and allows for a reduction in power dissipation by avoiding high speed data converters. The architecture of a mixed signal baseband processor for 100 Gbps wireless communication is described that reduces the implementation complexity and results in a consequent reduction in power dissipation and chip area."}]}]
