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IEEE, 2018. <a href=\"https://doi.org/10.1109/peds.2017.8289157\">https://doi.org/10.1109/peds.2017.8289157</a>.","ieee":"M. Hagemeyer, N. Fröhleke, J. Böcker, B. Rödder, L. Aßmann, and B. Völkel, “Design of a flywheel energy storage system for high current pulsating loads,” 2018, doi: <a href=\"https://doi.org/10.1109/peds.2017.8289157\">10.1109/peds.2017.8289157</a>.","ama":"Hagemeyer M, Fröhleke N, Böcker J, Rödder B, Aßmann L, Völkel B. Design of a flywheel energy storage system for high current pulsating loads. In: <i>2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)</i>. IEEE; 2018. doi:<a href=\"https://doi.org/10.1109/peds.2017.8289157\">10.1109/peds.2017.8289157</a>","apa":"Hagemeyer, M., Fröhleke, N., Böcker, J., Rödder, B., Aßmann, L., &#38; Völkel, B. (2018). Design of a flywheel energy storage system for high current pulsating loads. <i>2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)</i>. <a href=\"https://doi.org/10.1109/peds.2017.8289157\">https://doi.org/10.1109/peds.2017.8289157</a>","short":"M. Hagemeyer, N. Fröhleke, J. Böcker, B. Rödder, L. Aßmann, B. Völkel, in: 2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS), IEEE, 2018.","mla":"Hagemeyer, Marc, et al. “Design of a Flywheel Energy Storage System for High Current Pulsating Loads.” <i>2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)</i>, IEEE, 2018, doi:<a href=\"https://doi.org/10.1109/peds.2017.8289157\">10.1109/peds.2017.8289157</a>.","bibtex":"@inproceedings{Hagemeyer_Fröhleke_Böcker_Rödder_Aßmann_Völkel_2018, title={Design of a flywheel energy storage system for high current pulsating loads}, DOI={<a href=\"https://doi.org/10.1109/peds.2017.8289157\">10.1109/peds.2017.8289157</a>}, booktitle={2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)}, publisher={IEEE}, author={Hagemeyer, Marc and Fröhleke, Norbert and Böcker, Joachim and Rödder, Bernd and Aßmann, Lars and Völkel, Bernd}, year={2018} }"},"publication_status":"published","user_id":"66","doi":"10.1109/peds.2017.8289157","title":"Design of a flywheel energy storage system for high current pulsating loads","author":[{"last_name":"Hagemeyer","first_name":"Marc","full_name":"Hagemeyer, Marc"},{"first_name":"Norbert","full_name":"Fröhleke, Norbert","last_name":"Fröhleke"},{"orcid":"0000-0002-8480-7295","first_name":"Joachim","full_name":"Böcker, Joachim","id":"66","last_name":"Böcker"},{"last_name":"Rödder","full_name":"Rödder, Bernd","first_name":"Bernd"},{"first_name":"Lars","full_name":"Aßmann, Lars","last_name":"Aßmann"},{"full_name":"Völkel, Bernd","first_name":"Bernd","last_name":"Völkel"}]},{"doi":"10.1007/978-3-662-56398-4","place":"Berlin, Heidelberg","alternative_title":["Intelligente Lastverschiebung mit Lastspitzenvermeidung"],"author":[{"orcid":"0000-0002-4212-6555","full_name":"Stille, Karl Stephan Christian","first_name":"Karl Stephan Christian","last_name":"Stille","id":"30152"}],"title":"Energiemanagement von Haushaltsgroßgeräten","department":[{"_id":"52"}],"publication_status":"published","user_id":"30152","citation":{"ama":"Stille KSC. <i>Energiemanagement von Haushaltsgroßgeräten</i>. Springer Berlin Heidelberg; 2018. doi:<a href=\"https://doi.org/10.1007/978-3-662-56398-4\">10.1007/978-3-662-56398-4</a>","apa":"Stille, K. S. C. (2018). <i>Energiemanagement von Haushaltsgroßgeräten</i>. Springer Berlin Heidelberg. <a href=\"https://doi.org/10.1007/978-3-662-56398-4\">https://doi.org/10.1007/978-3-662-56398-4</a>","chicago":"Stille, Karl Stephan Christian. <i>Energiemanagement von Haushaltsgroßgeräten</i>. Berlin, Heidelberg: Springer Berlin Heidelberg, 2018. <a href=\"https://doi.org/10.1007/978-3-662-56398-4\">https://doi.org/10.1007/978-3-662-56398-4</a>.","ieee":"K. S. C. Stille, <i>Energiemanagement von Haushaltsgroßgeräten</i>. Berlin, Heidelberg: Springer Berlin Heidelberg, 2018.","mla":"Stille, Karl Stephan Christian. <i>Energiemanagement von Haushaltsgroßgeräten</i>. Springer Berlin Heidelberg, 2018, doi:<a href=\"https://doi.org/10.1007/978-3-662-56398-4\">10.1007/978-3-662-56398-4</a>.","bibtex":"@book{Stille_2018, place={Berlin, Heidelberg}, title={Energiemanagement von Haushaltsgroßgeräten}, DOI={<a href=\"https://doi.org/10.1007/978-3-662-56398-4\">10.1007/978-3-662-56398-4</a>}, publisher={Springer Berlin Heidelberg}, author={Stille, Karl Stephan Christian}, year={2018} }","short":"K.S.C. Stille, Energiemanagement von Haushaltsgroßgeräten, Springer Berlin Heidelberg, Berlin, Heidelberg, 2018."},"status":"public","language":[{"iso":"ger"}],"type":"dissertation","publication_identifier":{"isbn":["9783662563977","9783662563984"],"issn":["2523-3637","2523-3645"]},"year":"2018","publisher":"Springer Berlin Heidelberg","date_created":"2022-02-23T09:22:03Z","date_updated":"2022-04-07T11:38:07Z","_id":"29972"},{"year":"2018","type":"dissertation","publication_identifier":{"isbn":["978-3-8440-6047-8"]},"language":[{"iso":"ger"}],"status":"public","date_created":"2022-03-28T11:30:05Z","date_updated":"2022-04-26T07:32:17Z","_id":"30636","doi":"10.2370/9783844060478","abstract":[{"text":"\tBegrenzte Vorräte fossiler Energiequellen beeinflussen die individuelle Mobilität von heute und morgen. Eine Schlüsseltechnologie, um dieses Energieproblem zu lösen, ist das batteriebetriebene Elektrofahrzeug (BEV). Der „Flaschenhals“ des BEV in Bezug auf Reichweite und Kosten pro Kapazität ist die Batterie. Diese Arbeit beschreibt die Entwicklung eines Fahrzeugenergiemanagements für ein BEV zur Reduzierung dieses „Flaschenhalses“. Das heißt im speziellen diskutiert sie eine neuartige Lastmanagementstrategie: Diese soll die Energieverluste am Innenwiderstand der Traktionsbatterie reduzieren, um so die Reichweite pro installierter Batterie-Kapazität zu erhöhen. Dafür soll das Lastmanagement den Batteriestrom glätten, es verhält sich also wie ein „virtueller Kondensator“. Die Stromschwankungen um den Mittelwert des Batteriestroms werden reduziert, indem die einzelnen Lasten balanciert werden. Die reduzierte Belastung der Batterie, durch Reduzierung von Spitzenströmen und Stromschwankungen im Allgemeinen, könnte die Lebensdauer der Batterie erhöhen und zu weniger restriktiven Anforderung an die Leistungsdichte der Batterie führen, zum Vorteil einer höheren Energiedichte (diese wiederum bedeutet eine höhere Reichweite oder niedrigere Batterie-Kosten). Um einen geglätteten Batteriestrom zu erreichen, wurde eine neuartige Entwurfsmethodik entwickelt. Dabei kommt die Methode der „Quantitative Feedback Theory“ zum Einsatz, für den Entwurf eines robust-stabilen MIMO-Reglers in der Gegenwart von parametrischen Unsicherheiten und Nichtlinearitäten der Regelstrecke. Im Prototypen-Fahrzeug beeinflusst der MIMO-Regler die elektrische Heizung zur Erwärmung der Fahrgastzelle, sowie die größte elektrische Last: den Antriebsstrang selbst. Theoretisch wird eine Reichweitenerhöhung von bis zu 3,462 % im Prototypen erreicht. Während die Heizung für die Beeinflussung prädestiniert ist, aufgrund der hohen Zeitkonstante zur Erwärmung der Fahrgastzelle, ist demgegenüber der Einfluss auf den Antriebsstrang kritisch in Bezug auf die Fahrerakzeptanz. Daher muss der Einfluss der Funktion auf ein Maß beschränkt sein, das der Fahrer akzeptiert. Dies wird mit einer Fahrerakzeptanzstudie untermauert. ","lang":"ger"}],"title":"Ein neuartiger Ansatz der robusten Regelung für das Lastmanagement in batteriebetriebenen Elektrofahrzeugen","author":[{"full_name":"Masjosthusmann, C.","first_name":"C.","last_name":"Masjosthusmann"}],"department":[{"_id":"52"}],"citation":{"short":"C. Masjosthusmann, Ein neuartiger Ansatz der robusten Regelung für das Lastmanagement in batteriebetriebenen Elektrofahrzeugen, 2018.","mla":"Masjosthusmann, C. <i>Ein neuartiger Ansatz der robusten Regelung für das Lastmanagement in batteriebetriebenen Elektrofahrzeugen</i>. 2018, doi:<a href=\"https://doi.org/10.2370/9783844060478\">10.2370/9783844060478</a>.","bibtex":"@book{Masjosthusmann_2018, title={Ein neuartiger Ansatz der robusten Regelung für das Lastmanagement in batteriebetriebenen Elektrofahrzeugen}, DOI={<a href=\"https://doi.org/10.2370/9783844060478\">10.2370/9783844060478</a>}, author={Masjosthusmann, C.}, year={2018} }","chicago":"Masjosthusmann, C. <i>Ein neuartiger Ansatz der robusten Regelung für das Lastmanagement in batteriebetriebenen Elektrofahrzeugen</i>, 2018. <a href=\"https://doi.org/10.2370/9783844060478\">https://doi.org/10.2370/9783844060478</a>.","ieee":"C. Masjosthusmann, <i>Ein neuartiger Ansatz der robusten Regelung für das Lastmanagement in batteriebetriebenen Elektrofahrzeugen</i>. 2018.","apa":"Masjosthusmann, C. (2018). <i>Ein neuartiger Ansatz der robusten Regelung für das Lastmanagement in batteriebetriebenen Elektrofahrzeugen</i>. <a href=\"https://doi.org/10.2370/9783844060478\">https://doi.org/10.2370/9783844060478</a>","ama":"Masjosthusmann C. <i>Ein neuartiger Ansatz der robusten Regelung für das Lastmanagement in batteriebetriebenen Elektrofahrzeugen</i>.; 2018. doi:<a href=\"https://doi.org/10.2370/9783844060478\">10.2370/9783844060478</a>"},"user_id":"71353","main_file_link":[{"url":"https://www.shaker.de/de/content/catalogue/index.asp?lang=de&ID=8&ISBN=978-3-8440-6047-8&search=yes"}]},{"doi":"10.17619/UNIPB/1-283","title":"Zentralwechselrichter in der Photovoltaik","author":[{"last_name":"Bach-Preckwinkel","full_name":"Bach-Preckwinkel, H.","first_name":"H."}],"department":[{"_id":"52"}],"citation":{"chicago":"Bach-Preckwinkel, H. <i>Zentralwechselrichter in der Photovoltaik</i>, 2018. <a href=\"https://doi.org/10.17619/UNIPB/1-283\">https://doi.org/10.17619/UNIPB/1-283</a>.","ieee":"H. Bach-Preckwinkel, <i>Zentralwechselrichter in der Photovoltaik</i>. 2018.","apa":"Bach-Preckwinkel, H. (2018). <i>Zentralwechselrichter in der Photovoltaik</i>. <a href=\"https://doi.org/10.17619/UNIPB/1-283\">https://doi.org/10.17619/UNIPB/1-283</a>","ama":"Bach-Preckwinkel H. <i>Zentralwechselrichter in der Photovoltaik</i>.; 2018. doi:<a href=\"https://doi.org/10.17619/UNIPB/1-283\">10.17619/UNIPB/1-283</a>","short":"H. Bach-Preckwinkel, Zentralwechselrichter in der Photovoltaik, 2018.","mla":"Bach-Preckwinkel, H. <i>Zentralwechselrichter in der Photovoltaik</i>. 2018, doi:<a href=\"https://doi.org/10.17619/UNIPB/1-283\">10.17619/UNIPB/1-283</a>.","bibtex":"@book{Bach-Preckwinkel_2018, title={Zentralwechselrichter in der Photovoltaik}, DOI={<a href=\"https://doi.org/10.17619/UNIPB/1-283\">10.17619/UNIPB/1-283</a>}, author={Bach-Preckwinkel, H.}, year={2018} }"},"user_id":"71353","language":[{"iso":"ger"}],"type":"dissertation","year":"2018","status":"public","date_created":"2022-03-28T11:28:11Z","date_updated":"2022-04-26T07:30:59Z","_id":"30635"},{"citation":{"short":"J. Tao, Half-Cycle-Sampled Discrete Model of Series-Parallel Resonant Converter with Optimized Modulation and Its Control Design, 2018.","bibtex":"@book{Tao_2018, title={Half-Cycle-Sampled Discrete Model of Series-Parallel Resonant Converter with Optimized Modulation and Its Control Design}, DOI={<a href=\"https://doi.org/10.17619/UNIPB/1-284\">10.17619/UNIPB/1-284</a>}, author={Tao, J.}, year={2018} }","mla":"Tao, J. <i>Half-Cycle-Sampled Discrete Model of Series-Parallel Resonant Converter with Optimized Modulation and Its Control Design</i>. 2018, doi:<a href=\"https://doi.org/10.17619/UNIPB/1-284\">10.17619/UNIPB/1-284</a>.","ieee":"J. Tao, <i>Half-Cycle-Sampled Discrete Model of Series-Parallel Resonant Converter with Optimized Modulation and Its Control Design</i>. 2018.","chicago":"Tao, J. <i>Half-Cycle-Sampled Discrete Model of Series-Parallel Resonant Converter with Optimized Modulation and Its Control Design</i>, 2018. <a href=\"https://doi.org/10.17619/UNIPB/1-284\">https://doi.org/10.17619/UNIPB/1-284</a>.","apa":"Tao, J. (2018). <i>Half-Cycle-Sampled Discrete Model of Series-Parallel Resonant Converter with Optimized Modulation and Its Control Design</i>. <a href=\"https://doi.org/10.17619/UNIPB/1-284\">https://doi.org/10.17619/UNIPB/1-284</a>","ama":"Tao J. <i>Half-Cycle-Sampled Discrete Model of Series-Parallel Resonant Converter with Optimized Modulation and Its Control Design</i>.; 2018. doi:<a href=\"https://doi.org/10.17619/UNIPB/1-284\">10.17619/UNIPB/1-284</a>"},"user_id":"71353","department":[{"_id":"52"}],"title":"Half-Cycle-Sampled Discrete Model of Series-Parallel Resonant Converter with Optimized Modulation and Its Control Design","author":[{"full_name":"Tao, J.","first_name":"J.","last_name":"Tao"}],"doi":"10.17619/UNIPB/1-284","_id":"30857","date_updated":"2022-04-26T08:59:59Z","date_created":"2022-04-07T11:35:43Z","year":"2018","type":"dissertation","language":[{"iso":"eng"}],"status":"public"},{"status":"public","type":"conference","year":"2018","language":[{"iso":"eng"}],"publisher":"ACM","publication":"Proceedings of the 2018 on Great Lakes Symposium on VLSI","date_created":"2022-01-19T13:42:27Z","date_updated":"2022-01-19T13:44:17Z","_id":"29460","doi":"10.1145/3194554.3194599","abstract":[{"text":"STT-RAM cells can be considered as an alternative or a hybrid addition to today's SRAM-based cache memories. This is mostly because of their scalability and low leakage power. Moreover, their data storing mechanism (storing the value as resistance) makes them very suitable and applicable for multivalue cache architectures. This feature results in system performance enhancement without any area overhead. On the other hand, the required two-step read/write procedure in multilevel cells results in a non-uniform time access and energy and power overhead on the system. In this paper, we propose a new architecture to dynamically swap data between soft (fast read access) and hard (slow read access) bits in ML cell. Moreover, by reconfiguring cache block size, the proposed architecture can switch between ML and SL modes at runtime. In other words, the swapping method places the hot part of each cache block into soft-bits and the less accessed part into the hard-bits. The SL/ML switching method benefits from the low latency and energy of SL mode and the high storing capacity of ML mode at the same time. Although experimental results show that our proposed method slightly increases the miss rate compared with the conventional ML caches, the performance and energy are improved by 4.9% and 6.5%, respectively. Also, the storage overhead of our method is about 1% that is negligible.","lang":"eng"}],"author":[{"first_name":"Ramin","full_name":"Rezaeizadeh Rookerd, Ramin","last_name":"Rezaeizadeh Rookerd"},{"first_name":"Somayeh","full_name":"Sadeghi-Kohan, Somayeh","last_name":"Sadeghi-Kohan","id":"78614"},{"first_name":"Zainalabedin","full_name":"Navabi, Zainalabedin","last_name":"Navabi"}],"title":"Performance and Energy Enhancement through an Online Single/Multi Level Mode Switching Cache Architecture","department":[{"_id":"48"}],"user_id":"78614","publication_status":"published","citation":{"ieee":"R. Rezaeizadeh Rookerd, S. Sadeghi-Kohan, and Z. Navabi, “Performance and Energy Enhancement through an Online Single/Multi Level Mode Switching Cache Architecture,” 2018, doi: <a href=\"https://doi.org/10.1145/3194554.3194599\">10.1145/3194554.3194599</a>.","chicago":"Rezaeizadeh Rookerd, Ramin, Somayeh Sadeghi-Kohan, and Zainalabedin Navabi. “Performance and Energy Enhancement through an Online Single/Multi Level Mode Switching Cache Architecture.” In <i>Proceedings of the 2018 on Great Lakes Symposium on VLSI</i>. ACM, 2018. <a href=\"https://doi.org/10.1145/3194554.3194599\">https://doi.org/10.1145/3194554.3194599</a>.","ama":"Rezaeizadeh Rookerd R, Sadeghi-Kohan S, Navabi Z. Performance and Energy Enhancement through an Online Single/Multi Level Mode Switching Cache Architecture. In: <i>Proceedings of the 2018 on Great Lakes Symposium on VLSI</i>. ACM; 2018. doi:<a href=\"https://doi.org/10.1145/3194554.3194599\">10.1145/3194554.3194599</a>","apa":"Rezaeizadeh Rookerd, R., Sadeghi-Kohan, S., &#38; Navabi, Z. (2018). Performance and Energy Enhancement through an Online Single/Multi Level Mode Switching Cache Architecture. <i>Proceedings of the 2018 on Great Lakes Symposium on VLSI</i>. <a href=\"https://doi.org/10.1145/3194554.3194599\">https://doi.org/10.1145/3194554.3194599</a>","short":"R. Rezaeizadeh Rookerd, S. Sadeghi-Kohan, Z. Navabi, in: Proceedings of the 2018 on Great Lakes Symposium on VLSI, ACM, 2018.","bibtex":"@inproceedings{Rezaeizadeh Rookerd_Sadeghi-Kohan_Navabi_2018, title={Performance and Energy Enhancement through an Online Single/Multi Level Mode Switching Cache Architecture}, DOI={<a href=\"https://doi.org/10.1145/3194554.3194599\">10.1145/3194554.3194599</a>}, booktitle={Proceedings of the 2018 on Great Lakes Symposium on VLSI}, publisher={ACM}, author={Rezaeizadeh Rookerd, Ramin and Sadeghi-Kohan, Somayeh and Navabi, Zainalabedin}, year={2018} }","mla":"Rezaeizadeh Rookerd, Ramin, et al. “Performance and Energy Enhancement through an Online Single/Multi Level Mode Switching Cache Architecture.” <i>Proceedings of the 2018 on Great Lakes Symposium on VLSI</i>, ACM, 2018, doi:<a href=\"https://doi.org/10.1145/3194554.3194599\">10.1145/3194554.3194599</a>."}},{"department":[{"_id":"52"}],"citation":{"short":"T. Vogt, J. Badeda, J. Böcker, D.U. Sauer, in: 2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS), IEEE, 2018.","bibtex":"@inproceedings{Vogt_Badeda_Böcker_Sauer_2018, title={Consideration on primary control reserve provision by industrial microgrids in grid-coupled operation}, DOI={<a href=\"https://doi.org/10.1109/peds.2017.8289189\">10.1109/peds.2017.8289189</a>}, booktitle={2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)}, publisher={IEEE}, author={Vogt, Thorsten and Badeda, Julia and Böcker, Joachim and Sauer, Dirk Uwe}, year={2018} }","mla":"Vogt, Thorsten, et al. “Consideration on Primary Control Reserve Provision by Industrial Microgrids in Grid-Coupled Operation.” <i>2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)</i>, IEEE, 2018, doi:<a href=\"https://doi.org/10.1109/peds.2017.8289189\">10.1109/peds.2017.8289189</a>.","ieee":"T. Vogt, J. Badeda, J. Böcker, and D. U. Sauer, “Consideration on primary control reserve provision by industrial microgrids in grid-coupled operation,” 2018, doi: <a href=\"https://doi.org/10.1109/peds.2017.8289189\">10.1109/peds.2017.8289189</a>.","chicago":"Vogt, Thorsten, Julia Badeda, Joachim Böcker, and Dirk Uwe Sauer. “Consideration on Primary Control Reserve Provision by Industrial Microgrids in Grid-Coupled Operation.” In <i>2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)</i>. IEEE, 2018. <a href=\"https://doi.org/10.1109/peds.2017.8289189\">https://doi.org/10.1109/peds.2017.8289189</a>.","apa":"Vogt, T., Badeda, J., Böcker, J., &#38; Sauer, D. U. (2018). Consideration on primary control reserve provision by industrial microgrids in grid-coupled operation. <i>2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)</i>. <a href=\"https://doi.org/10.1109/peds.2017.8289189\">https://doi.org/10.1109/peds.2017.8289189</a>","ama":"Vogt T, Badeda J, Böcker J, Sauer DU. Consideration on primary control reserve provision by industrial microgrids in grid-coupled operation. In: <i>2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)</i>. IEEE; 2018. doi:<a href=\"https://doi.org/10.1109/peds.2017.8289189\">10.1109/peds.2017.8289189</a>"},"publication_status":"published","user_id":"71353","doi":"10.1109/peds.2017.8289189","title":"Consideration on primary control reserve provision by industrial microgrids in grid-coupled operation","author":[{"full_name":"Vogt, Thorsten","first_name":"Thorsten","last_name":"Vogt"},{"last_name":"Badeda","first_name":"Julia","full_name":"Badeda, Julia"},{"orcid":"0000-0002-8480-7295","id":"66","last_name":"Böcker","full_name":"Böcker, Joachim","first_name":"Joachim"},{"last_name":"Sauer","first_name":"Dirk Uwe","full_name":"Sauer, Dirk Uwe"}],"date_updated":"2022-03-28T11:28:51Z","_id":"30632","language":[{"iso":"eng"}],"type":"conference","year":"2018","status":"public","date_created":"2022-03-28T11:19:55Z","publication":"2017 IEEE 12th International Conference on Power Electronics and Drive Systems (PEDS)","publisher":"IEEE"},{"date_created":"2018-10-02T12:18:46Z","publication":"2018 IEEE 21st International Symposium on Design and Diagnostics of Electronic Circuits & Systems (DDECS)","publisher":"IEEE","language":[{"iso":"eng"}],"publication_identifier":{"isbn":["9781538657546"]},"type":"conference","year":"2018","status":"public","_id":"4575","date_updated":"2022-05-11T17:10:37Z","title":"Tuning Stochastic Space Compaction to Faster-than-at-Speed Test","author":[{"last_name":"Sprenger","id":"22707","first_name":"Alexander","full_name":"Sprenger, Alexander"},{"orcid":"0000-0002-3717-3939","first_name":"Sybille","full_name":"Hellebrand, Sybille","id":"209","last_name":"Hellebrand"}],"place":"Budapest, Hungary","project":[{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"doi":"10.1109/ddecs.2018.00020","citation":{"short":"A. Sprenger, S. Hellebrand, in: 2018 IEEE 21st International Symposium on Design and Diagnostics of Electronic Circuits &#38; Systems (DDECS), IEEE, Budapest, Hungary, 2018.","mla":"Sprenger, Alexander, and Sybille Hellebrand. “Tuning Stochastic Space Compaction to Faster-than-at-Speed Test.” <i>2018 IEEE 21st International Symposium on Design and Diagnostics of Electronic Circuits &#38; Systems (DDECS)</i>, IEEE, 2018, doi:<a href=\"https://doi.org/10.1109/ddecs.2018.00020\">10.1109/ddecs.2018.00020</a>.","bibtex":"@inproceedings{Sprenger_Hellebrand_2018, place={Budapest, Hungary}, title={Tuning Stochastic Space Compaction to Faster-than-at-Speed Test}, DOI={<a href=\"https://doi.org/10.1109/ddecs.2018.00020\">10.1109/ddecs.2018.00020</a>}, booktitle={2018 IEEE 21st International Symposium on Design and Diagnostics of Electronic Circuits &#38; Systems (DDECS)}, publisher={IEEE}, author={Sprenger, Alexander and Hellebrand, Sybille}, year={2018} }","chicago":"Sprenger, Alexander, and Sybille Hellebrand. “Tuning Stochastic Space Compaction to Faster-than-at-Speed Test.” In <i>2018 IEEE 21st International Symposium on Design and Diagnostics of Electronic Circuits &#38; Systems (DDECS)</i>. Budapest, Hungary: IEEE, 2018. <a href=\"https://doi.org/10.1109/ddecs.2018.00020\">https://doi.org/10.1109/ddecs.2018.00020</a>.","ieee":"A. Sprenger and S. Hellebrand, “Tuning Stochastic Space Compaction to Faster-than-at-Speed Test,” 2018, doi: <a href=\"https://doi.org/10.1109/ddecs.2018.00020\">10.1109/ddecs.2018.00020</a>.","apa":"Sprenger, A., &#38; Hellebrand, S. (2018). Tuning Stochastic Space Compaction to Faster-than-at-Speed Test. <i>2018 IEEE 21st International Symposium on Design and Diagnostics of Electronic Circuits &#38; Systems (DDECS)</i>. <a href=\"https://doi.org/10.1109/ddecs.2018.00020\">https://doi.org/10.1109/ddecs.2018.00020</a>","ama":"Sprenger A, Hellebrand S. Tuning Stochastic Space Compaction to Faster-than-at-Speed Test. In: <i>2018 IEEE 21st International Symposium on Design and Diagnostics of Electronic Circuits &#38; Systems (DDECS)</i>. IEEE; 2018. doi:<a href=\"https://doi.org/10.1109/ddecs.2018.00020\">10.1109/ddecs.2018.00020</a>"},"publication_status":"published","user_id":"209","department":[{"_id":"48"}]},{"year":"2018","publication_identifier":{"isbn":["9781538694664"]},"type":"conference","language":[{"iso":"eng"}],"status":"public","publication":"27th IEEE Asian Test Symposium (ATS'18)","date_created":"2019-07-05T08:14:58Z","date_updated":"2022-05-11T17:11:53Z","_id":"10575","doi":"10.1109/ats.2018.00028","title":"Extending Aging Monitors for Early Life and Wear-Out Failure Prevention","author":[{"full_name":"Liu, Chang","first_name":"Chang","last_name":"Liu"},{"last_name":"Schneider","first_name":"Eric","full_name":"Schneider, Eric"},{"last_name":"Kampmann","id":"10935","first_name":"Matthias","full_name":"Kampmann, Matthias"},{"id":"209","last_name":"Hellebrand","first_name":"Sybille","full_name":"Hellebrand, Sybille","orcid":"0000-0002-3717-3939"},{"full_name":"Wunderlich, Hans-Joachim","first_name":"Hans-Joachim","last_name":"Wunderlich"}],"department":[{"_id":"48"}],"citation":{"apa":"Liu, C., Schneider, E., Kampmann, M., Hellebrand, S., &#38; Wunderlich, H.-J. (2018). Extending Aging Monitors for Early Life and Wear-Out Failure Prevention. <i>27th IEEE Asian Test Symposium (ATS’18)</i>. <a href=\"https://doi.org/10.1109/ats.2018.00028\">https://doi.org/10.1109/ats.2018.00028</a>","ama":"Liu C, Schneider E, Kampmann M, Hellebrand S, Wunderlich H-J. Extending Aging Monitors for Early Life and Wear-Out Failure Prevention. In: <i>27th IEEE Asian Test Symposium (ATS’18)</i>. ; 2018. doi:<a href=\"https://doi.org/10.1109/ats.2018.00028\">10.1109/ats.2018.00028</a>","ieee":"C. Liu, E. Schneider, M. Kampmann, S. Hellebrand, and H.-J. Wunderlich, “Extending Aging Monitors for Early Life and Wear-Out Failure Prevention,” 2018, doi: <a href=\"https://doi.org/10.1109/ats.2018.00028\">10.1109/ats.2018.00028</a>.","chicago":"Liu, Chang, Eric Schneider, Matthias Kampmann, Sybille Hellebrand, and Hans-Joachim Wunderlich. “Extending Aging Monitors for Early Life and Wear-Out Failure Prevention.” In <i>27th IEEE Asian Test Symposium (ATS’18)</i>, 2018. <a href=\"https://doi.org/10.1109/ats.2018.00028\">https://doi.org/10.1109/ats.2018.00028</a>.","bibtex":"@inproceedings{Liu_Schneider_Kampmann_Hellebrand_Wunderlich_2018, title={Extending Aging Monitors for Early Life and Wear-Out Failure Prevention}, DOI={<a href=\"https://doi.org/10.1109/ats.2018.00028\">10.1109/ats.2018.00028</a>}, booktitle={27th IEEE Asian Test Symposium (ATS’18)}, author={Liu, Chang and Schneider, Eric and Kampmann, Matthias and Hellebrand, Sybille and Wunderlich, Hans-Joachim}, year={2018} }","mla":"Liu, Chang, et al. “Extending Aging Monitors for Early Life and Wear-Out Failure Prevention.” <i>27th IEEE Asian Test Symposium (ATS’18)</i>, 2018, doi:<a href=\"https://doi.org/10.1109/ats.2018.00028\">10.1109/ats.2018.00028</a>.","short":"C. Liu, E. Schneider, M. Kampmann, S. Hellebrand, H.-J. Wunderlich, in: 27th IEEE Asian Test Symposium (ATS’18), 2018."},"user_id":"209","publication_status":"published"},{"citation":{"mla":"Kress, Christian, et al. “64 GBd Monolithically Integrated Coherent QPSK Single Polarization Receiver in 0.25 Μm SiGe-Photonic Technology.” <i>Optical Fiber Communication Conference 2018, San Diego</i>, vol. Th4A.6, 2018.","bibtex":"@inproceedings{Kress_Gudyriev_Zwickel_Kemal_Lischke_Zimmermann_Koos_Scheytt_2018, title={64 GBd Monolithically Integrated Coherent QPSK Single Polarization Receiver in 0.25 µm SiGe-Photonic Technology}, volume={Th4A.6}, booktitle={Optical Fiber Communication Conference 2018, San Diego}, author={Kress, Christian and Gudyriev, Sergiy and Zwickel, Heiner and Kemal, Juned N. and Lischke, Stefan and Zimmermann, Lars and Koos, Christian and Scheytt, Christoph}, year={2018} }","short":"C. Kress, S. Gudyriev, H. Zwickel, J.N. Kemal, S. Lischke, L. Zimmermann, C. Koos, C. Scheytt, in: Optical Fiber Communication Conference 2018, San Diego, 2018.","apa":"Kress, C., Gudyriev, S., Zwickel, H., Kemal, J. N., Lischke, S., Zimmermann, L., Koos, C., &#38; Scheytt, C. (2018). 64 GBd Monolithically Integrated Coherent QPSK Single Polarization Receiver in 0.25 µm SiGe-Photonic Technology. <i>Optical Fiber Communication Conference 2018, San Diego</i>, <i>Th4A.6</i>.","ama":"Kress C, Gudyriev S, Zwickel H, et al. 64 GBd Monolithically Integrated Coherent QPSK Single Polarization Receiver in 0.25 µm SiGe-Photonic Technology. In: <i>Optical Fiber Communication Conference 2018, San Diego</i>. Vol Th4A.6. ; 2018.","chicago":"Kress, Christian, Sergiy Gudyriev, Heiner Zwickel, Juned N. Kemal, Stefan Lischke, Lars Zimmermann, Christian Koos, and Christoph Scheytt. “64 GBd Monolithically Integrated Coherent QPSK Single Polarization Receiver in 0.25 Μm SiGe-Photonic Technology.” In <i>Optical Fiber Communication Conference 2018, San Diego</i>, Vol. Th4A.6, 2018.","ieee":"C. Kress <i>et al.</i>, “64 GBd Monolithically Integrated Coherent QPSK Single Polarization Receiver in 0.25 µm SiGe-Photonic Technology,” in <i>Optical Fiber Communication Conference 2018, San Diego</i>, San Diego, CA, USA , 2018, vol. Th4A.6."},"user_id":"15931","department":[{"_id":"58"},{"_id":"230"}],"title":"64 GBd Monolithically Integrated Coherent QPSK Single Polarization Receiver in 0.25 µm SiGe-Photonic Technology","conference":{"location":"San Diego, CA, USA ","start_date":"2018.03.11","end_date":"2018.03.15"},"author":[{"first_name":"Christian","full_name":"Kress, Christian","id":"13256","last_name":"Kress"},{"full_name":"Gudyriev, Sergiy","first_name":"Sergiy","last_name":"Gudyriev"},{"first_name":"Heiner","full_name":"Zwickel, Heiner","last_name":"Zwickel"},{"full_name":"Kemal, Juned N.","first_name":"Juned N.","last_name":"Kemal"},{"first_name":"Stefan","full_name":"Lischke, Stefan","last_name":"Lischke"},{"full_name":"Zimmermann, Lars","first_name":"Lars","last_name":"Zimmermann"},{"last_name":"Koos","first_name":"Christian","full_name":"Koos, Christian"},{"orcid":"https://orcid.org/0000-0002-5950-6618","id":"37144","last_name":"Scheytt","first_name":"Christoph","full_name":"Scheytt, Christoph"}],"abstract":[{"text":"A monolithically integrated coherent receiver in silicon photonic technology is presented along with measurement results for constellation diagrams up to 64GBd and bandwidth of 34 GHz. To our knowledge this is the fastest single-chip coherent receiver.","lang":"eng"}],"_id":"24197","volume":"Th4A.6","date_updated":"2023-01-10T13:08:09Z","date_created":"2021-09-13T07:38:05Z","related_material":{"link":[{"url":"https://ieeexplore.ieee.org/abstract/document/8386360","relation":"confirmation"}]},"publication":"Optical Fiber Communication Conference 2018, San Diego","language":[{"iso":"eng"}],"year":"2018","type":"conference","publication_identifier":{"eisbn":["978-1-943580-38-5"]},"status":"public"},{"language":[{"iso":"eng"}],"type":"conference","year":"2018","status":"public","related_material":{"link":[{"url":"http://www.iph.rwth-aachen.de/wp-content/uploads/SODC-2018-Program-General-Public.pdf","relation":"confirmation"}]},"date_created":"2021-09-13T07:37:54Z","publication":"10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)","publisher":"IEEE","date_updated":"2023-01-10T13:06:13Z","_id":"24189","place":"Germany/Aachen","title":"Electronic Photonic Integrated Circuits for Coherent and Non-Coherent Receivers","conference":{"start_date":"2018.09.17","end_date":"2018.09.19"},"author":[{"first_name":"Sergiy","full_name":"Gudyriev, Sergiy","last_name":"Gudyriev"},{"first_name":"Christian","full_name":"Kress, Christian","id":"13256","last_name":"Kress"},{"full_name":"Scheytt, Christoph","first_name":"Christoph","id":"37144","last_name":"Scheytt","orcid":"https://orcid.org/0000-0002-5950-6618"}],"department":[{"_id":"58"},{"_id":"230"}],"citation":{"apa":"Gudyriev, S., Kress, C., &#38; Scheytt, C. (2018). Electronic Photonic Integrated Circuits for Coherent and Non-Coherent Receivers. <i>10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>.","ama":"Gudyriev S, Kress C, Scheytt C. Electronic Photonic Integrated Circuits for Coherent and Non-Coherent Receivers. In: <i>10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>. IEEE; 2018.","chicago":"Gudyriev, Sergiy, Christian Kress, and Christoph Scheytt. “Electronic Photonic Integrated Circuits for Coherent and Non-Coherent Receivers.” In <i>10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>. Germany/Aachen: IEEE, 2018.","ieee":"S. Gudyriev, C. Kress, and C. Scheytt, “Electronic Photonic Integrated Circuits for Coherent and Non-Coherent Receivers,” 2018.","mla":"Gudyriev, Sergiy, et al. “Electronic Photonic Integrated Circuits for Coherent and Non-Coherent Receivers.” <i>10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>, IEEE, 2018.","bibtex":"@inproceedings{Gudyriev_Kress_Scheytt_2018, place={Germany/Aachen}, title={Electronic Photonic Integrated Circuits for Coherent and Non-Coherent Receivers}, booktitle={10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)}, publisher={IEEE}, author={Gudyriev, Sergiy and Kress, Christian and Scheytt, Christoph}, year={2018} }","short":"S. Gudyriev, C. Kress, C. Scheytt, in: 10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018), IEEE, Germany/Aachen, 2018."},"user_id":"15931"},{"publication":"10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)","date_created":"2021-09-13T07:37:53Z","related_material":{"link":[{"relation":"confirmation","url":"http://www.iph.rwth-aachen.de/?p=2051"}]},"publisher":"IEEE","type":"conference","year":"2018","language":[{"iso":"eng"}],"status":"public","_id":"24188","date_updated":"2023-01-10T13:05:12Z","title":"Ultra‐broadband Signal Processing by means of Electronic‐Photonic Integration","author":[{"id":"37144","last_name":"Scheytt","full_name":"Scheytt, Christoph","first_name":"Christoph","orcid":"https://orcid.org/0000-0002-5950-6618"}],"place":"Germany/Aachen","citation":{"apa":"Scheytt, C. (2018). Ultra‐broadband Signal Processing by means of Electronic‐Photonic Integration. <i>10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>.","ama":"Scheytt C. Ultra‐broadband Signal Processing by means of Electronic‐Photonic Integration. In: <i>10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>. IEEE; 2018.","ieee":"C. Scheytt, “Ultra‐broadband Signal Processing by means of Electronic‐Photonic Integration,” 2018.","chicago":"Scheytt, Christoph. “Ultra‐broadband Signal Processing by Means of Electronic‐Photonic Integration.” In <i>10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>. Germany/Aachen: IEEE, 2018.","bibtex":"@inproceedings{Scheytt_2018, place={Germany/Aachen}, title={Ultra‐broadband Signal Processing by means of Electronic‐Photonic Integration}, booktitle={10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)}, publisher={IEEE}, author={Scheytt, Christoph}, year={2018} }","mla":"Scheytt, Christoph. “Ultra‐broadband Signal Processing by Means of Electronic‐Photonic Integration.” <i>10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>, IEEE, 2018.","short":"C. Scheytt, in: 10th Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits (SODC 2018), IEEE, Germany/Aachen, 2018."},"user_id":"15931","department":[{"_id":"58"},{"_id":"230"}]}]
