@inproceedings{MuchaMottokKraemer, author = {Mucha, Matthias and Mottok, J{\"u}rgen and Kr{\"a}mer, Stefan}, title = {Estimation of Worst Case Response Time Boundaries in Multi-Core Real-Time Systems}, series = {2017 International Conference on Applied Electronics (AE), 5-6 Sept. 2017, Pilsen}, booktitle = {2017 International Conference on Applied Electronics (AE), 5-6 Sept. 2017, Pilsen}, publisher = {IEEE}, isbn = {978-80-261-0641-8}, issn = {1803-7232}, doi = {10.23919/ae.2017.8053598}, pages = {1 -- 6}, abstract = {We address a novel probabilistic approach to estimate the Worst Case Response Time boundaries of tasks. Multi-core real-time systems process tasks in parallel on two or more cores. Tasks in our contribution may preempt other tasks, block tasks with semaphores to access global shared resources, or migrate to another core. The depicted task behavior is random. The shape of collected response times of a task within a processing time is multimodal. Extreme Value approaches need unimodal response time distributions to estimate the Worst Case Response Time of tasks. The new proposed method derives a set of three task set shapes from the source task set. It is used to minimize the uncertainty of random task behavior by maximizing the coverage of possible Worst Case Response Times. The case study evaluates the new proposed estimation method by the use of dynamically generated random tasks with varying task properties.}, language = {en} } @article{BelyaevaKramarenkoShamoninChamonine, author = {Belyaeva, Inna A. and Kramarenko, Elena Yu and Shamonin (Chamonine), Mikhail}, title = {Magnetodielectric effect in magnetoactive elastomers: Transient response and hysteresis}, series = {POLYMER}, volume = {127}, journal = {POLYMER}, publisher = {ELSEVIER}, doi = {10.1016/j.polymer.2017.08.056}, pages = {119 -- 128}, abstract = {Magnetodielectric properties of magnetoactive elastomers comprising micrometer-sized iron particles dispersed in compliant elastomer matrices are experimentally studied in stepwise time-varying dc magnetic fields. It is found that imposition of magnetic field significantly increases both the effective lossless permittivity of these composite materials as well as their effective conductivity. These magnetodielectric effects are more pronounced for larger concentrations of soft-magnetic filler particles and softer elastomer matrices. The largest observed relative change of the effective dielectric constant in the maximum magnetic field of 0.57 T is of the order of 1000\%. The largest observed absolute change of the loss tangent is approximately 0.8. The transient response of the magnetodielectric effect to a step magnetic-field excitation can be rather complex. It changes from a simple monotonic growth with time for small magnetic-field steps (<0.1 T) to a non-monotonic behavior with a significant rapidly appearing overshoot for large magnetic-field steps (>0.3 T). The settling time to the magnetic-field step excitation can reach roughly 1000 s and it depends on the applied magnetic field and sample composition. There is also significant hysteresis of the magnetodielectric effect on the externally applied magnetic field. These findings are attributed to the rearrangement of ferromagnetic filler particles in external magnetic fields. The results will be useful for understanding and predicting the transient behavior of magnetoactive elastomers in applications where the control magnetic field is time dependent. (C) 2017 Elsevier Ltd. All rights reserved.}, language = {en} } @article{SorokinBelyaevaShamoninChamonineetal., author = {Sorokin, Vladislav V. and Belyaeva, Inna A. and Shamonin (Chamonine), Mikhail and Kramarenko, Elena Yu}, title = {Magnetorheological response of highly filled magnetoactive elastomers from perspective of mechanical energy density: Fractal aggregates above the nanometer scale?}, series = {Physical Review E}, volume = {95}, journal = {Physical Review E}, number = {6}, publisher = {Amer Physical Soc}, doi = {10.1103/PhysRevE.95.062501}, abstract = {The dynamic shear modulus of magnetoactive elastomers containing 70 and 80 mass \% of carbonyl iron microparticles is measured as a function of strain amplitude via dynamic torsion oscillations in various magnetic fields. The results are presented in terms of the mechanical energy density and considered in the framework of the conventional Kraus model. The form exponent of the Kraus model is further related to a physical model of Huber et al. [Huber et al., J. Phys.: Condens. Matter 8, 409 (1996)] that uses a realistic representation for the cluster network possessing fractal structure. Two mechanical loading regimes are identified. At small strain amplitudes the exponent beta of the Kraus model changes in an externally applied magnetic field due to rearrangement of ferromagnetic-filler particles, while at large strain amplitudes, the exponent beta seems to be independent of the magnetic field. The critical mechanical energy characterizing the transition between these two regimes grows with the increasing magnetic field. Similarities between agglomeration and deagglomeration of magnetic filler under simultaneously applied magnetic field and mechanical shear and the concept of jamming transition are discussed. It is proposed that the magnetic field should be considered as an additional parameter to the jamming phase diagram of rubbers filled with magnetic particles.}, language = {en} } @incollection{SternerBauerCrotoginoetal., author = {Sterner, Michael and Bauer, Franz and Crotogino, Fritz and Eckert, Fabian and von Olshausen, Christian and Teichmann, Daniel and Thema, Martin}, title = {Chemische Energiespeicher}, series = {Energiespeicher - Bedarf, Technologien, Integration}, booktitle = {Energiespeicher - Bedarf, Technologien, Integration}, edition = {2. Auflage}, publisher = {Springer Vieweg}, address = {Berlin ; Heidelberg}, isbn = {978-3-662-48893-5}, doi = {10.1007/978-3-662-48893-5_8}, pages = {327 -- 493}, subject = {Energiespeicher}, language = {de} } @incollection{StadlerBauerBudtetal., author = {Stadler, Ingo and Bauer, Franz and Budt, Marcus and Heindl, Eduard and Wolf, Daniel}, title = {Mechanische Energiespeicher}, series = {Energiespeicher - Bedarf, Technologien, Integration}, booktitle = {Energiespeicher - Bedarf, Technologien, Integration}, edition = {2. Auflage}, publisher = {Springer Vieweg}, address = {Berlin ; Heidelberg}, isbn = {978-3-662-48893-5}, doi = {10.1007/978-3-662-48893-5_9}, pages = {495 -- 577}, language = {de} } @incollection{SternerBauer, author = {Sterner, Michael and Bauer, Franz}, title = {Definition und Klassifizierung von Energiespeichern}, series = {Energiespeicher - Bedarf, Technologien, Integration}, booktitle = {Energiespeicher - Bedarf, Technologien, Integration}, edition = {2. Auflage}, publisher = {Springer Vieweg}, address = {Berlin ; Heidelberg}, isbn = {978-3-662-48892-8}, doi = {10.1007/978-3-662-48893-5_2}, pages = {25 -- 49}, subject = {Energiespeicher}, language = {de} } @inproceedings{RauchBrueckl, author = {Rauch, Johannes and Br{\"u}ckl, Oliver}, title = {Analysis of the correlation behavior between local available information to the overall reactive power of a medium-voltage grid group}, series = {Applied Research Conference - ARC 2017, 7 July 2017 M{\"u}nchen}, booktitle = {Applied Research Conference - ARC 2017, 7 July 2017 M{\"u}nchen}, address = {M{\"u}nchen}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:898-opus4-58712}, pages = {224 -- 230}, abstract = {The initiated energy transition leads to extensive changes in the supply of energy. The increasing use of renewable energy causes a shift of the produced power from centralized conventional power plants to decentralized energy plants. Because of this redistribution and the related change of load-flows, new challenges and problems for distribution system operators appear. This includes the integration of new loads and plants into the existing power grid and the guarantee of a high supply security and quality. It also includes strengthened requirements for the use and provision of reactive power. The project "SyNErgie" ("Systemoptimierendes Netz- und Energiemanagement f{\"u}r Verteilungsnetze der Zukunft") deals with the development of a new reactive power management, which gets embedded in grid planning and controlling processes. One focus of the project is on the integration of decentralized energy plants (DEPs) to the reactive power management. The aim is to develop a decentralized and self-sufficient reactive power control system, which only works with local available information (measures). Therefore is no necessity of a complex communication system to the grid control center. Self-controlled Q-controller in the DEPs get characteristic curves and control the reactive power sources with local measurements (e.g. current, voltage, effective power). This new reactive power control management aims for the reactive power compensation in order to increase the integration capacity of loads and plants in a grid [2]. In order to generate characteristic curves for DEPs, it is necessary to analyze the correlation behavior between the local available measurements at the DEPs and the overall-Q-behavior of the grid group at the transformer. In that regard, influencing quantities should be considered. The aim is to involve und evaluate all relevant influencing quantities in order to determine energy plants and certain operating points, in which the correlation behavior and the prediction for the overall-Q-behavior are sufficient. The next step is to develop a model that fits these correlation behaviors and generate characteristic curves. One method to generate characteristic curves for the Q-controllers is regression analysis. The developed Q-control-system with the characteristic curves will be tested, evaluated and optimized in a following field test in cooperation with distribution system operators.}, language = {de} } @book{RillSchaeffer, author = {Rill, Georg and Schaeffer, Thomas}, title = {Grundlagen und Methodik der Mehrk{\"o}rpersimulation}, edition = {3. Aufl.}, publisher = {Springer}, address = {Wiesbaden}, isbn = {978-3-658-16008-1}, doi = {10.1007/978-3-658-16009-8}, abstract = {Dieses Lehrbuch stellt die Methoden der Mehrk{\"o}rpersimulation anschaulich dar und erl{\"a}utert an einfachen Beispielen die Vor- und Nachteile bei der praktischen Anwendung. In den Text integrierte Matlab-Skripte und -Funktionen verdeutlichen die einzelnen Methoden. Die Modellbildung, die mathematische Beschreibung und die numerische Simulation von Systemen starrer K{\"o}rper bilden dabei die Schwerpunkte. Konkrete Beispiele beinhalten die Eigendynamik eines Traktors mit Vorderachsfederung, das Hubschrauberrotorblatt sowie eine Pkw- Vorderachse. Die entsprechenden Matlab-Skripte und L{\"o}sungen zu den {\"U}bungsaufgaben k{\"o}nnen auf der Springer-Homepage beim Buch heruntergeladen werden. Neu aufgenommen wurden SparseMatrix Operationen sowie ein Beispiel zu einfach geschlossenen kinematischen Schleifen.}, language = {de} } @misc{OPUS4-6694, title = {Energieforschung}, edition = {Ausgabe 2016}, publisher = {OTH Regensburg}, organization = {Ostbayerische Technische Hochschule Regensburg / Regensburg Center of Energy and Resources (RCER)}, doi = {10.35096/othr/pub-6694}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:898-opus4-66948}, abstract = {Das Regensburg Center of Energy and Resources (RCER) b{\"u}ndelt seit 2012 die Aktivit{\"a}ten der Ostbayerischen Technischen Hochschule Regensburg (OTH Regensburg) und der regionalen Wirtschaftsunternehmen auf dem Strategiefeld „Energie und Ressourcen".}, language = {de} } @incollection{StrohmayerBrueckl, author = {Strohmayer, Bernhard and Br{\"u}ckl, Oliver}, title = {Systemvergleich von Netzausbauoptionen in Niederspannungsnetzen}, series = {3. OTTI-Konferenz : zuk{\"u}nftige Stromnetze f{\"u}r Erneuerbare Energien, Berlin, 26./27. Januar 2016}, booktitle = {3. OTTI-Konferenz : zuk{\"u}nftige Stromnetze f{\"u}r Erneuerbare Energien, Berlin, 26./27. Januar 2016}, address = {Regensburg}, organization = {Ostbayerisches Technologie-Transfer-Institut (OTTI)}, isbn = {978-3-943891-63-8}, pages = {256 -- 261}, abstract = {Die Einhaltung der Spannungsbandgrenzen im Niederspannungsnetz durch die dezentrale Emspeisung von Erzeugungsanlagen ist oft der Grund f{\"u}r Netzausbaumaßnahmen. Dem Netzbetreiber stehen mittlerweile viele Losungsmaßnahmen zur Behebung des Spannungsbandproblems zur Verf{\"u}gung Innovative Konzepte wie der regelbare Ortsnetztransformator (RONT) oder Blindleistungsregelung sind bereits serienreif und werden eingesetzt. Unklarheit herrscht oft noch dar{\"u}ber, welche Maßnahmen bzw Kombinationen langfristig wirtschaftlich g{\"u}nstig sind und sich hinsichtlich der Netzplanung als vorteilhaft erweisen. Ein Forschungsprojekt an der Ostbayerischen Technischen Hochschule Regensburg untersucht verschiedene L{\"o}sungsmaßnahmen systematisch, um sie wirtschaftlich, technisch und energetisch bewerten zu k{\"o}nnen. In 20 Netzen wird in diskreten Schritten die Integration von Erzeugungskapazit{\"a}t am Beispiel der PV simuliert. Der Zubau umfasst den Bereich von 0-100\% des m{\"o}glichen Dachfl{\"a}chenpotenzials. Nach jedem Zubauschritt wird die maximale Spannungsanhebung berechnet. Bei {\"U}berschreiten einer Spannungsanhebung in H{\"o}he der in [VDE, FNN Erzeugungsanlagen am Niederspannungsnetz, VDE-AR-N 4105:2011-08] verankerten drei Prozentpunkte, oder der Stromtragf{\"a}higkeitsgrenze eines Betriebsmittels erfolgt ein Netzausbau. Dabei werden die Optionen RONT, die Parallelverkabelung, drei Stufen des Einspeisemanagements (Spitzenkappung auf 85\%, 70\% und 55\%), die Blindleistungsregelung (cosφ(P)), der Zubau von zus{\"a}tzlichen Ortsnetzstationen und die Verwendung von Strangreglern untersucht. Je kleiner das Ortsnetz, desto st{\"a}rker bedingt sich die Kostenentwicklung durch die gew{\"a}hlte Prim{\"a}rmaßnahme. Klassischer Netzausbau ist in kleinen Netzen meist teurer als der Einsatz von RONT oder Strangreglern. In gr{\"o}ßeren Netzen k{\"o}nnen Parallelverkabelung oder zus{\"a}tzliche ONS zu g{\"u}nstigen Ausbaupfaden f{\"u}hren. Maßnahmen die anfangs nahezu keine Investition in Netzbetriebsmittel ben{\"o}tigen (Einspeisemanagement, Blindleistungsregelung) sind initial mit Abstand am g{\"u}nstigsten. Im Mittel g{\"u}nstiger als RONT sind anfangs auch Verkabelung und Strangregler, jedoch bei h{\"o}herer Ergebnisstreuung. Bereits nach f{\"u}nf Perioden liegen die mittleren Gegenwartswerte f{\"u}r starke Spitzenkappung, Blindleistungsregelung und zus{\"a}tzliche ONS h{\"a}ufig {\"u}ber der Maßnahme RONT. Die geringste Kostenstreuung tritt beim Einsatz von RONT auf. Mittel- und langfristig liegen die Mediane fast aller Prim{\"a}rmaßnahmen {\"u}ber den wahrscheinlich auftretenden Kosten f{\"u}r Strangregler und RONT. Bei Erschließung von zus{\"a}tzlichen 25\% des theoretisch maximalen Potenzials nach Erreichen der NAK betragen die Kosten bei RONT-Einsatz ca. 125/kWp. Parallelverkabelung verursacht rd. 45, Blindleistungsregelung rd. 55 €/kWp Mehrkosten. Bei 50\% des Ausbaupotenzials f{\"u}hren Parallelverkabelung und Blindleistungsregelung mit im Mittel 50 bzw. 75 €/kWp sogar zu noch h{\"o}heren Mehrkosten. F{\"u}r 20 GW PV-Leistung in der Niederspannung bedeutet dies {\"u}ber 1 Mrd. Zusatzkosten. RONT und Strangregler erweisen sich zudem kostenrobust gegen{\"u}ber unerwartet ausbleibendem Kapazit{\"a}tszubau. Analysen dazu und Ergebnisse f{\"u}r andere Zinss{\"a}tze und Zeitskalen befinden sich in [INA, Informationsportal: Regelbare Ortsnetztransformatoren, 2015. http://ront.info].}, language = {de} }