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Research Projects
Current Projects
| Grid Computing and Virtual Organizations |
Timo Baur,
Nils O.v.d. gentschen Felde,
Helmut Reiser,
Michael Schiffers,
Matthias Göhner,
Sameh Saad
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With the fast spreading of Grids in both research and industry, there is also an increasing demand for an adequate management of both Grid infrastructures and Virtual Organizations. Some of the new management challenges associated with Grids stem from their very nature: resource providers are usually independent, autonomous organizations exhibiting different legal, financial, and interest backgrounds; Grid resources are typically heterogeneous with unknown dependability patterns; Virtual Organizations need to be created, modified, destroyed dynamically; workflows need to cross organizational boundaries; operational processes must be enabled to adapt themselves dynamically to current environmental and situational changes.
The MNM Team focuses their Grid research activities on these questions. In particular the team is investigating how and to what extent the necessary flexibility of integrated Grid management may be automated. Research goals are thus the provisioning of a framework for managing dynamic Virtual Organizations, to understand the Grid co-management problem (resources can belong to several management domains), the development of adequate concepts for the self-management of resources and services, monitoring and accounting within the context of Grid environments, and the provisioning of a management specific Grid testbed.
Cooperations:
The MNM Team has joined several national and international cooperations and projects related to Grid research. Examples are: the Distributed European Infrastructure for Supercomputing Applications (DEISA), a consortium of leading national supercomputing centres; the D-Grid initiative for the promotion of a Grid-based e-science framework in Germany; the ByGRID, a project for sharing the supercomputer resources of the Bavarian universities; the Atlas Data Challenge/NorduGrid, a Grid project for wide area computing and data handling associated with CERN's Large Hadron Collider Grid; the Uniform Interface to Computing Resources (UNICORE/UNICOREplus) Forum.
In addition, the MNM Team contributes to the Global Grid Forum (GGF) and participates in GridLab and AccessGrid activities.
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| EMANICS - Management Solutions for Next Generation Networks |
Ralf König
Feng Liu
Thomas Schaaf
Frank Eyermann
Matthias Göhner
Iris Hochstatter
Sameh Saad
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This is a Network of Excellence project supported by the European Commission
Information Society Technologies 6th Framework Program. The network brings
together 13 of the best research teams across Europe in the discipline of
network and service management.
It addresses the scalability, dynamics, security and automation
challenges that emerge towards the management plane of the future Internet.
Its main objective is to extend the European leadership and expertise in
the area of the network and service management plane, critical to every
network.
Research integration is achieved within the project through both the joined
establishment of a common vision of major challenges in the discipline,
complemented with specific targeted joint research actions addressing the
following management themes:
- Management Foundations
- Management Technologies
- Management Applications
Cooperation partners:
13 other European research institutes in EMANICS - Management Solutions for Next Generation Networks - an EU Network of Excellence
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| Customer Network Management |
Patricia Marcu David Schmitz
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The Wissenschaftsnetz (X-WiN, Scientific
Research Network) is the national part of the
German research network and is therefore the heart of
"the Internet for science in Germany". It spans an
infrastructure among more than 40 core network routers which are
under the responsibility of the DFN-Verein.
To give all institutions (users) that are connected to
the X-WiN an insight into the general state of the
network as well as into the exact data for their own
link the DFN-Verein provides a Customer Network
Management (CNM) system which is run at the Leibniz
Supercomputing Center. All users get access to this
system automatically.
For the IP service "DFNInternet" the CNM contains the
following applications for the users:
- Data Volume: With the help of this application
the users can track how much IP traffic they have send
or received via their X-WiN link. This application is
completely implemented and is available for all
users.
- Topology: With the support of this
application the users can get current information
about the status of the X-WiN. In addition, it is
possible to get historic data. This application is
implemented and is available since April 2004.
Since the start of the EU-funded project GN2 JRA1 in September 2004, the CNM tool has
been evolved for its use in the European research backbone network Geant2
and connected national research and education networks. The
topology application
shows the network topologies of these networks and shows utilization as
well as delay, jitter, and packet loss data.
Cooperation partners: Deutsches Forschungsnetz (DFN),
DANTE
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Delegation of Tasks and Rights |
Latifa Boursas,
Helmut Reiser,
Wolfgang Hommel
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Most existing security models do not consider cases of
temporary, single task delegations where a delegate
receives a task under special exceptional circumstances,
for which the delegate is not fully authorized.
This scenario has several implications on security: on
the one hand the delegate needs all necessary rights to
execute the task, on the other hand the delegating is
still responsible for all actions taken in the context of
the task. This project investigates different ways how to
solve these problems securely.
Cooperation partners: Deutsche Forschungsgemeinschaft (DFG), Technische Universiät München (TUM)
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Monotoring of multi-domain End-to-End Links |
Matthias K. Hamm,
Mark Yampolskiy
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Modern large-scale research projects such as the Large Hadron Collider (LHC)
at CERN require a tight international cooperation and have exceeding network bandwidth demands. Dedicated optical multi
gigabit End-to-End (E2E) Links is a new service within the pan-European research network Géant2 which offer a possible
way to meet these requirements. These links generally are realized with layer 1 and 2 technologies and cross multiple
networks operated by different organisational domains. The federated organisation of the operation and the usage of
heterogeneous hardware applying a variety of information access and management techniques require a new approach for the
management of these multi-domain E2E Links.
Commencing end of 2005 a general concept for management of E2E Links was elaborated and for this concept required
E2E Monitoring System (E2Emon) was developed. Meanwhile E2Emon is deployed in the production environment of the E2E
Coordination Unit (U2ECU) which coordinates multi-domain activities on E2E Links.
Cooperation partners:
Géant2,
DANTE,
Deutsches Forschungsnetz (DFN),
Communication et Systèmes (C-S)
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Platform Virtualization - Virtualization of Hosts and Operating Systems |
Nils gentschen Felde,
Ralf König,
Tobias Lindinger
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- Trend analysis for Virtualization Solutions
- Virtualization solutions in embedded systems
- Management of virtualization solutions
- Security of virtualization solutions
Cooperation partners:
Siemens Corporate Technology
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Center for Digital Technology and Management (CDTM) |
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The Center for Digital Technology and Management is an interdisciplinary institution of education and research and joint venture between the Ludwig Maximilians University Munich (LMU) and the Technical University Munich (TUM).
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Building on the strengths of both universities, the CDTM provides highly qualified and ambitious students with an excellent academic education in the field of technology and management. The elite study program Technology Management combines the following foci:
- An interdisciplinary approach in the interface of business administration, electrical engineering and computer science,
- a strong international character,
- a philosophy of entrepreneurship,
- the integration of theory and practice,
and an excellent preparation of students for leadership-positions.
As a research institution, the CDTM closely cooperates with the industry, concentrating on the TIME-sector (Telecommunication, Information Technology, Media, Entertainment).
The CDTM is closely connected to the public university system in Munich. Nine professors from the LMU and TUM constitute its supervisory board. CDTM's operative business is run by the Scientific Directors and the Executive Team. CDTM understands the importance of student participation and responsiblity for the organization. Therefore students participate intensively in the ongoing business of CDTM.
Since 2004, Technology Management became part of and is supported by the Elite Network of Bavaria (ENB).
The head of the Chair of Communication Systems and System Programming Prof. Dr. Heinz-Gerd Hegering is Board Member of the CDTM. For more information, please contact research assistant Martin Sailer.
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Previous Projects
Adaptive Configuration and Fault Tolerance - Policy-based Update Management in Smart Home Environments (PUSH)
Ralf König
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At the same time as devices in the information and communication
technology branch are getting more and more complex, more and more
self-management functions are intgrated into hard- and software, hiding
much of the complexity from the user. In this project, we investigate
the cooperation of external control and self-management.
One goal of the project is to establish a classification of
systems with self-management functions. Therefore, metrics have to
be defined for the various criteria. The work shall result in an
evaluation sheet, that enables the comparison of such systems.
Engineering disciplines such as automotive engineering, aviation and
space technology shall be investigated for concepts, that are promising
to apply to IT systems management.
The knowledge, gained in the first part shall then be applied to a
practical problem. The chosen scenario is the automation of
update management in Smart Home environments. Update management
is therefore modelled as a generic process independent of application
domain. Policies allow to control the update management process.
Cooperation partners:
Mobile and Distributed Systems Group
Siemens Corporate Technology
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Mobility & Policy for Siemens
Vitalian A. Danciu
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The mobile telecommunication sector has evolved rapidly
during the last decade, spawning new technology,
standards and constantly evolving business models and
services. While telephony is still by far the most
important service, networks providing higher bandwidth
to the end user allow the deployment of sophisticated
value added services.
To allow a seamless operation of these services,
providers need to implement inter-domain service and
device management. The advent of (hitherto mostly
desktop-based) wireless technologies such as Wireless
LAN (aka WiFi) and Bluetooth add to the heterogeneity
of the networks and thus increase the management
challenge.
The goal of this project is to analyse the application
of policy-based management techniques to 4th
Generation mobile communications infrastructures and
devices. This includes the development of distribution
concepts for policy-based management architectures as
well as an evaluation of suitable policy languages.
Cooperation partners:
Mobile and Distributed Systems Group
Siemens Corporate Technology
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Michael Schiffers
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KODI (Kontextsensitive Dienste in globalen UMTS
Diensten) – a German abbreviation for
Context-aware Services – is a project whose goal
is to introduce the concepts of context-awareness to
services in the UMTS environment.
Context-awareness describes the ability of a service
to adapt to the situation of the user. As a result,
interaction with the user is optimized and the
acceptance of mobile services is likely to increase.
UMTS stands for Universal Mobile Telecommunications
System and denotes the Third Generation of cellular
telecommunication networks. It evolves from
today’s widely deployed GSM (Global System for
Mobile Communications). The KODI-Project is a
joint effort of Siemens
AG Corporate Technology, Apollis interactive AG
and the Ludwig-Maximilian-University
of Munich and is partially funded by the State of
Bavaria (Bayerische
Staatskanzlei).
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Management of Application Service Provider (ASP) Infrastructures
Michael Brenner
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Despite some disillusionment after the burst of the dot-com bubble regarding
the short-term success of ASPs, the case for the ASP business model remains
persuasive. Compared to traditional, in-house IT service provisioning, it
offers economies of scale and scope. It still is the most touchable part of
the IT as a utility-vision.
However the ASP model poses several IT management challenges, especially
pertaining to Service Level Management. This project seeks to identify and
investigate the research topics, on a organizational as well as a technical
level, that arise from the need of managing the Quality of Service (QoS)
across inter-organizational service-chains.
Cooperation partner:
T-Systems
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Christian Ensel
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Naturanaloge Lern- und Optimierungsverfahren für vernetzte Systeme
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SETIK
Markus Garschhammer,
Michael Schiffers
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In this long-term project carried out together with Bundesamt für Sicherheit
in der Informationstechnik (BSI), the chair
of Software & Systems Engineering Prof. Dr. Broy,
TUM), and the The
Institute for Information, Organization and Management
at the Munich School of Management three books were
published sumarizing the results of an IT-expert panel
questionaire analyzing future developements in
information und communication technologies covering a
wide area of topics from IT-security to software
engineering, communication protocols to database
software and varios application scenarios (e.g. home
automation) to mention a few. All books published (in
greman) are available online.
Kommunikations- und Informationstechnik 2010 Trends in Technologie und
Markt
Integrierte Gebäudesysteme --- Technologien, Sicherheit und
Märkte
Kommunikations- und Informationstechnik 2010+3 Trends in Technologie und Markt
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Gerald Vogt
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Security is still a key issue for the success or failure
of Mobile Agent Systems in the real world. While the
concept of local execution can be efficient over
distributed approaches, the locality also implies dangers
for the local environment executing an agent as well as
the agent being executed. This project deals with various
different aspects of security related to this area.
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Igor Radisic
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With service orientation gaining more importance over
the last couple of years, new requirements have evolved
which are posed on accounting management solutions. In
brief, accounting management systems are required to support
a wide-range customization of the provided accounting
functionality according to customer needs. This includes
among others the support of complex-structured, usage-based,
customer-individual tariffs as well as the support of
increasing dynamics due to change management activities.
All in all, an accounting management system is needed which
is able to handle the complete service life cycle regarding
accounting in a customer- and service--oriented
way. Additionally, from a provider's point of view a high
automation of management tasks is demanded. In this
research project we are developing an integrated,
policy-based management solution to fulfill the
aforementioned requirements.
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