TY - CHAP A1 - Hartmann, Dietrich A1 - Meißner, Udo F. A1 - Rueppel, Uwe T1 - Integration of Productmodel Databases into Multi-Agent Systems N2 - This paper deals with two different agent-based approaches aimed at the incorporation of complex design information into multi-agent planning systems. The first system facilitates collaborative structural design processes, the second one supports fire engineering in buildings. Both approaches are part of two different research projects that belong to the DFG1 priority program 1103 entitled “Network-based Co-operative Planning Processes in Structural Engineering“ (DFG 2000). The two approaches provide similar database wrapper agents to integrate relevant design information into two multi-agent systems: Database wrapper agents make the relevant product model data usable for further agents in the multi-agent system, independent on their physical location. Thus, database wrapper agents act as an interface between multi-agent system and heterogeneous database systems. The communication between the database wrapper agents and other requesting agents presumes a common vocabulary: a specific database ontology that maps database related message contents into database objects. Hereby, the software-wrapping technology enables the various design experts to plug in existing database systems and data resources into a specific multi-agent system easily. As a consequence, dynamic changes in the design information of large collaborative engineering projects are adequately supported. The flexible architecture of the database wrapper agent concept is demonstrated by the integration of an XML and a relational database system. KW - Ingenieurbau KW - Verteiltes System KW - Planungsprozess KW - Modellierung KW - Mehragentensystem Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1410 ER - TY - CHAP A1 - Rüppel, Uwe A1 - Meißner, Udo F. A1 - Theiss, Mirko T1 - Dynamisch-adaptive Kostenkalkulation für die Bauprojektentwicklung in vernetzten Systemen N2 - Die Entwicklung von Projekten des Hoch- und Industriebaus ist durch eine Vielzahl von zu verarbeitenden Informationen und Bewertungsgrundlagen in den Planungsphasen der Bau-land- sowie der Hoch- und Industriebauentwicklung für die Kostenkalkulation geprägt. Die Identifizierung, Beschaffung, Verwaltung und Verarbeitung dieser nach Art, Form und Inhalt bei den Kommunikationspartnern verteilt vorliegenden Informationen führt zu komplexen Planungsprozessen. Zur Bewältigung dieser Komplexität ist die Bauprojektentwicklung kooperativ in vernetzten Systemen durchzuführen. Insbesondere kann die Kostenkalkulation auf Basis der sich zeitlich verändernden Fachinformation im Netz effizient, zeitnah und mit hoher Qualität durchgeführt werden. Die bisher eingesetzten Methoden und Verfahren unterstützen die Projektplaner bei der Datenerfassung und -verarbeitung der kostenrelevanten Informationen nur in lokalen Computernetzen. Die Erfassung von Kosteninformationen, wie zum Beispiel Kostenschätzungen zur Planung von Projekten oder die im Laufe der Projektentwicklung entstehenden Kosten, liegen jedoch verteilt bei den Projektpartnern vor. Es ist daher notwendig, zur Vermeidung von Erfassungs-fehlern und zur Steigerung der Kooperation der Projektpartner bei der wirtschaftlichen Kalkulation von Bauprojekten, den Projektpartnern eine rechnergestützte und projektweite Kalkulation unter Nutzung von Computernetzwerken zu ermöglichen. Die Autoren stellen ein agenten-basiertes Kooperationsmodell für die Kosten-Kalkulation in Rahmen der Bauprojektentwicklung in vernetzten Systemen vor, das durch Strukturierung der Planungsinformationen die selbständige Suche nach klar definierten Informationen auf Basis mobiler Internet-Agenten dynamisch-adaptiv unterstützt. KW - Bauplanung KW - Informationsmanagement KW - Vernetztes System Y1 - 2000 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-6086 ER - TY - CHAP A1 - Katzenbach, Rolf A1 - Meißner, Udo F. A1 - Rueppel, Uwe T1 - Abstraction of Process Relevant Information from Geotechnical Standards and Regulations N2 - The paper presents the abstraction of process relevant information in order to enable the workflow management based on semantic data. It is shown for three examples, how the standards define the information needed to perform a certain planning activity. Abstraction of process relevant information is discussed for different granularities of the underlying processmodel. As one possible application ProMiSE is introduced, which uses process relevant data in individual tokens in a petri-net based process-model. KW - Geotechnik KW - Prozessmodell KW - Normung Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111028-1002 ER - TY - CHAP A1 - Meißner, Udo F. A1 - Rueppel, Uwe A1 - Theiss, Mirko T1 - Network-Based Fire Engineering Supported by Agents N2 - Building design in Civil Engineering is characterized by the cooperation of experts in multiple disciplines. Close cooperation of engineers in different fields is the basis of high product quality, short development periods and a minimum of investment costs. For each building the engineers have to create a new fire engineering model. The consistent realization of the fire engineering model in all details has high demands on communication, collaboration and building models. Thereby, to preserve the related design models consistent to each other and compatible with the rules of fire engineering is a complex task. In addition, regulations and guidelines vary according to the building location, so the knowledge base must be integrated dynamically into the planning process. This contribution covers the integration of engineers and design models into a cooperation network on the basis of mobile agents. The distributed models of architectural design, structural planning and fire engineering are supported. These models are implemented as XML-based models which can be accessed by mobile agents for information retrieval and for processing tasks. Agents are provided to all planners, they are enabled to check up the distributed design models with the knowledge base of the fire protection regulations,. With the use of such an agent each planner is supported to check up his planning for accordance with the fire protection requirements. The fire-engineering-agent analyzes the design and detects inconsistencies by processing fire protection requirements and design model facts in a rule-based expert system. The possibility to check the planning information at an early state in the sense of compatibility to the fire protection regulations enables a comprehensive diagnosis of the design and the reduction of planning errors. KW - Ingenieurbau KW - Verteiltes System KW - Planungsprozess KW - Modellierung KW - Brandschutz KW - Mehragentensystem Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1447 ER -