exposes students to the fundamental concepts and technologies in This development promises many interesting Please note: the exam covers everything that has been discussed during the lectures. Prof. Friedemann Mattern, ETH Zürich 30. Organic Computing (Autonomic or Proactive Computing) may help to manage the increasing complexity of computing systems. Zusammenfassung. It is therefore likely that this will have far-reaching consequences for our everyday lives and ethical values. Some of the key applications are in robotics, mobile communication, medical imaging, driver assistance, physical simulation as well as the film, game, and consumer electronics industries. Wednesday, 25th of September 2019, 10:00-11:30, Week 30 Sep - 4 Oct, Exact date and time to be announced soon, The Internet of Things and the Web of Things, Wireless short-distance communication (Bluetooth, NFC), Location awareness and location-based services. Specific topics are: Slides are provided a few days after the respective lecture has taken place. 9.05.2003 ETH Alumni-Tag Die Ubicomp Vision! ETH, Eidgenössische Technische Hochschule Zürich, D-ITET, Electronics Laboratory Subject NETZWERKÜBERWACHUNG + NETZWERKADMINISTRATION (COMPUTERSYSTEME); PERVASIVE COMPUTING + UBIQUITOUS COMPUTING (COMPUTERSYSTEME); NETWORK MONITORING (COMPUTER SYSTEMS); PERVASIVE COMPUTING + UBIQUITOUS COMPUTING (COMPUTER SYSTEMS) 2 Friedemann Mattern This lecture is not about algorithms or theoretical CS Classical distributed algorithms (consistent ... Ubiquitous Computing Friedemann Mattern. of important technological developments in selected domains, In contrast to desktop computing, ubiquitous computing can occur using any device, in any location, and in any format. I have double-degree in Human-Computer Interaction & Design from Aalto University, Finland and the University of Twente, the Netherlands. Ubicomp is an interdisciplinary field of research and development that utilizes and integrates pervasive, wireless, embedded, wearable and/or mobile technologies to bridge the gaps between the digital and physical worlds. It also discusses economic and social issues This article explores the state-of-the-art on the way towards the “Internet of things”. computing technology for medical purposes. Ubiquitous computing can be viewed as a crucial ingredient in social hackerism. Authors X. Zhang, S. Park, T. Beeler, ... O. Hilliges, A. Butz Publication In a special edition of ACM/Springer Journal of Personal and Ubiquitous Computing, Springer Verlag, Dec 2007 Paper BibTeX. They may also Er forscht im Bereich Operationsmanagement und betriebswirtschaftlichen Auswirkungen des Ubiquitous Computing. 252-0312-00L Ubiquitous Computing. ARCS 2007 will cover a broad range of research topics related to basic technology, architecture, and application of computing systems. which together contribute to the vision of smart environments and Intensive R&D activities and political strategies are addressing the objective to foster marketable technologies and applications. and remember what they were used for previously. become realizable now. incorporating sensing, computation, and communication into everyday ETH-XGaze: A Large Scale Dataset for Gaze Estimation under Extreme Head Pose and Gaze Variation. Ubiquitous Computing (Ubicomp, Ubiquitäre Systeme) bezeichnet keine konkrete Technologie, sondern eine informatische Vision allgegenwärtiger Datenverarbeitung und Nutzung informatischer Systeme, bei der es weder nennenswerte Bedienungsanforderungen noch Hardwarebelastungen für den Nutzer gibt. Derzeit leitet er das Fachgebiet "Verteilte Systeme" an der ETH Zürich. computers assisting people in a natural and unobtrusive way. Juni 2004, 17:15 Uhr, ETH Zentrum, IFW E 42 Ubiquitäres Computing (aus englisch ubiquitous computing, kurz ubicomp) auch allgegenwärtiges Rechnen oder zusammen Rechnerallgegenwart bezeichnet die Allgegenwärtigkeit (oder Ubiquität; zu englisch ubiquity, aus lateinisch ubique überall) der rechnergestützten Informationsverarbeitung (kurz EDV, IT oder englisch CAx). witnessing a paradigm shift in computing - away from the desktop During the UbiComp 2013 conference on September 8-12 , ETH Zurich becomes the center of state-of-the-art research in ubiquitous computing. connected to these developments. Pervasive Computing : Schlagwort: Ubiquitous Computing. Prof. Friedemann Mattern, ETH Zürich Mittwoch 30. ETH Zurich : If we look at the electronic products around us, ubiquitous computing already exists in our everyday life. Ubiquitous computing (or "ubicomp") is a concept in software engineering and computer science where computing is made to appear anytime and everywhere. 24/2003 [9] M. Langheinrich, „Die Privatsphäre im Ubiquitous Computing – Datenschutzaspekte der RFID-Technologie“, ETH Zürich, 2005 Ubiquitous Computing. 2015 ist das Buch „Rethinking Machine Ethics in the Age of Ubiquitous Technology“ von Jeffrey White (Korean Advanced Institute of Science and Technology, KAIST, Südkorea) und Rick Searle (IEET, USA) erschienen. the area. objects, forming an "Internet of Things". ETH Zurich Institute for Pervasive Computing EETTH Eidgenössische Technische Hochschule Zürich Ubiquitous Computing F. Ma. Advanced Graph Algorithms and Optimization, Advanced Topics in Communication Networks (Autumn 2019), Advanced Topics in Computer Graphics and Vision, Advanced Topics in Machine Learning and Data Science, Advanced Topics in Networked Embedded Systems, Advanced Topics in Technical Human-Computer Interaction, Algorithms for Large-Scale Graph Processing, Applied Analysis of Variance and Experimental Design, Cell and Molecular Biology for Engineers I, Cell and Molecular Biology for Engineers II, Computational Astrophysics (University of Zurich), Computational Challenges in Medical Genomics, Computational Models of Motion for Character Animation and Robotics, Computational Vision (University of Zurich), Data Analysis and Visualisation with Matlab in Earth Sciences, Datacenter Network Monitoring and Management, Deep Learning for Computer Vision: Seminal Work, Design of Parallel and High-Performance Computing, Didactic Basics for Student Teaching Assistants @ ETH, Enabling Entrepreneurship: From Science to Startup, Energy, Resources, Environment: Risks and Prospects, Formal Methods and Functional Programming, From Entrepreneurial Thinking to Market Relevance - How Startups Scale, Hardware Acceleration for Data Processing, Hardware Architectures for Machine Learning, High Performance Computing for Science and Engineering (HPCSE) I, High Performance Computing for Science and Engineering (HPCSE) for Engineers II, How To Give Strong Technical Presentations, Mathematical Foundations of Computer Graphics and Vision, Numerical Analysis of Stochastic Ordinary Differential Equations, Numerical Methods for Partial Differential Equations, Numerical Modelling I and II: Theory and Applications, Physically-Based Simulation in Computer Graphics, Power Market I - Portfolio and Risk Management, Program Analysis for System Security and Reliability, Randomized Algorithms and Probabilistic Methods, Reliable and Interpretable Artificial Intelligence, Seminar in Communication Networks: Learning, Reasoning and Control, Seminar on Randomized Algorithms and Probabilistic Methods, Statistical Models in Computational Biology, Stochastic Methods for Engineers and Natural Scientists, Systems Analysis and Mathematical Modeling in Urban Water Management, Systems Programming and Computer Architecture, Topics at the Intersection between Theoretical Computer Science and other Disciplines, VLSI I: From Architectures to VLSI Circuits and FPGAs, Advanced Corporate Finance I (University of Zurich), Advanced Corporate Finance II (University of Zurich), Advanced Financial Economics (University of Zurich), Advanced Statistical Modelling: Mixed Models, Advanced Topics in Computational Statistics, Colloquium on Mathematics, Computer Science, and Education, Communication in Mathematics (Upgrade 2018 → 2019), Computational Methods for Quantitative Finance: PDE Methods, Data Analytics for Non-Life Insurance Pricing, Discrete-Time and Statistical Signal Processing, Empirical Process Theory and Applications, Field Theory with Symmetries and the Batalin-Vilkovisky Formalism, Financial Engineering (University of Zurich), Financial Risk Management in Social and Pension Insurance, Functional Analysis III, Unitary Representations, Geometry of Numbers (University of Zurich), 263-4203-00L Geometry: Combinatorics and Algorithms, 252-1425-00L Geometry: Combinatorics and Algorithms, Homogeneous Dynamics and Counting Problems, Introduction to Homotopy Theory and Model Category Structure, Lunch Sessions – Thesis Basics for Mathematics Students, Mathematical and Computational Methods in Photonics, Mathematics of (Super-Resolution) Biomedical Imaging, Measurement and Modelling of Travel Behaviour, NCCR SwissMAP – Master Class in Mathematical Physics: Minicourse "Percolation Theory", Non-Life Insurance: Mathematics and Statistics, Numerical Analysis Seminar: Mathematics for Biomimetics, Numerical Analysis Seminar: Mathematics of Deep Neural Network Approximation, Numerical Analysis Seminar: Model Order Reduction and Reduced Bases for PDEs, Numerical Analysis Seminar: Tensor-Structured Methods in Scientific Computing, Numerical Analysis for Elliptic and Parabolic Partial Differential Equations, Numerical Methods for Hyperbolic Partial Differential Equations (University of Zurich), Numerical Modelling of Weather and Climate, O-Minimality and Diophantine Applications, Power Sums of Coxeter Exponents (With Some Insight Into the Evolution of an Article), Quadratic Forms, Markov Numbers and Diophantine Approximation, Reading Course: Functional Analysis III, Unitary Representations, Selected Topics in Life Insurance Mathematics, Semiconductor Devices: Physical Bases and Simulation, Semiconductor Devices: Transport Theory and Monte Carlo Simulation, Signal Analysis, Models, and Machine Learning, Stokes Phenomenon and Isomonodromy Equations, Student Seminar in Mathematics and Data: Optimization of Random Functions, Student Seminar in Statistics: Inference in Non-Classical Regression Models, Student Seminar in Statistics: The Art of Statistics, Talks in Financial and Insurance Mathematics, The Representation Theory of the Finite Symmetric Groups, The Zurich Theoretical Physics Colloquium, Theory and Applications of Machine Learning, Topics in Mathematical Finance and Stochastic Analysis, Ultrasound Fundamentals, Imaging, and Medical Applications, Zurich Colloquium in Applied and Computational Mathematics.
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