TY - THES A1 - Beer, Daniel G. T1 - Systementwurf für verteilte Applikationen und Modelle im Bauplanungsprozess T1 - System design for distributed applications and models in the planning process N2 - Der Planungsprozess im Konstruktiven Ingenieurbau ist gekennzeichnet durch drei sich zyklisch wiederholende Phasen: die Phase der Aufgabenverteilung, die Phase der parallelen Bearbeitung mit entsprechenden Abstimmungen und die Phase der Zusammenführung der Ergebnisse. Die verfügbare Planungssoftware unterstützt überwiegend nur die Bearbeitung in der zweiten Phase und den Austausch der Datenbestände durch Dokumente. Gegenstand der Arbeit ist die Entwicklung einer Systemarchitektur, die in ihrem Grundsatz alle Phasen der verteilten Bearbeitung und unterschiedliche Arten der Kooperation (asynchron, parallel, wechselseitig) berücksichtigt und bestehende Anwendungen integriert. Das gemeinsame Arbeitsmaterial der Beteiligten wird nicht als Dokumentmenge, sondern als Menge von Objekt- und Elementversionen und deren Beziehungen abstrahiert. Elemente erweitern Objekte um applikationsunabhängige Eigenschaften (Features). Für die Bearbeitung einer Aufgabe werden Teilmengen auf Basis der Features gebildet, für deren Elemente neue Versionen abgeleitet und in einen privaten Arbeitsbereich geladen werden. Die Bearbeitung wird auf Operationen zurückgeführt, mit denen das gemeinsame Arbeitsmaterial konsistent zu halten ist. Die Systemarchitektur wird formal mit Mitteln der Mathematik beschrieben, verfügbare Technologie beschrieben und deren Einsatz in einem Umsetzungskonzept dargestellt. Das Umsetzungskonzept wird pilothaft implementiert. Dies erfolgt in der Umgebung des Internet in der Sprache Java unter Verwendung eines Versionsverwaltungswerkzeuges und relationalen Datenbanken. N2 - The planning process in structural engineering can be characterized by three iterative phases: the phase of distribution of tasks, the phase of parallel working with cooperation among the planners and the phase of merging the results. Available planning software does only support the second phase and the exchange of data via documents. The objective of this thesis is the development of a software architecture that supports the three phases and all types of cooperation (asynchronous, parallel and reciprocal) in principle and integrates existing engineering applications. The common planning material is abstracted as a set of object versions, element versions and their relationships. Elements extend objects with application independent properties, called features. Subsets on the base of features are calculated for the execution of tasks. Therefore new versions of elements and objects are derived and copied into the planners’s private workspace. Already stored versions remain unchanged and can be referred to. Modifications base on operations that ensure the consistency of the versioned model. The system architecture is formally described with mathematical methods. Available information technology is analyzed and used for an implementation concept. The implementation concept is proven by a pilot applicable in the Internet. The implementation is based on the programming language Java, a version control system and a relational database. KW - Planungsprozess KW - Kooperation KW - Versionsverwaltung KW - Objektorientierung KW - Verteilte Anwendungen KW - Verteilte Modelle KW - cooperation KW - distributed applications KW - distributed models KW - versioning Y1 - 2005 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20060418-7892 N1 - Shaker Verlag, ISBN 3-8322-5060-3 ER - TY - CHAP A1 - Alda, Sascha A1 - Cremers, Armin B. A1 - Bilek, Jochen T1 - Support of Collaborative Structural Design Processes through the Integration of Peer-to-Peer and Multiagent Architectures N2 - Structural engineering projects are increasingly organized in networked cooperations due to a permanently enlarged competition pressure and a high degree of complexity while performing the concurrent design activities. Software that intends to support such collaborative structural design processes implicates enormous requirements. In the course of our common research work, we analyzed the pros and cons of the application of both the peer-to-peer (University of Bonn) and multiagent architecture style (University of Bochum) within the field of collaborative structural design. In this paper, we join the benefits of both architecture styles in an integrated conceptual approach. We demonstrate the surplus value of the integrated multiagent–peer-to-peer approach by means of an example scenario in which several structural engineers are co-operatively designing the basic structural elements of an arched bridge, applying heterogeneous CAD systems. 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:wim2-20111215-1481 ER - TY - CHAP A1 - König, Markus A1 - Klinger, Axel A1 - Berkhahn, Volker T1 - Structural Correctness of Planning Processes in Building Engineering N2 - The planning of projects in building engineering is a complex process which is characterized by a dynamical composition and many modifications during the definition and execution time of processes. For a computer-aided and network-based cooperation a formal description of the planning process is necessary. In the research project “Relational Process Modelling in Cooperative Building Planning” a process model is described by three parts: an organizational structure with participants, a building structure with states and a process structure with activities. This research project is part of the priority program 1103 “Network-Based Cooperative Planning Processes in Structural Engineering” promoted by the German Research Foundation (DFG). Planning processes in civil engineering can be described by workflow graphs. The process structure describes the logical planning process and can be formally defined by a bipartite graph. This structure consists of activities, transitions and relationships between activities and transitions. In order to minimize errors at execution time of a planning process a consistent and structurally correct process model must be guaranteed. This contribution considers the concept and the algorithms for checking the consistency and the correctness of the process structure. KW - Baubetrieb KW - Computerunterstütztes Verfahren KW - Planungsprozess KW - Konsistenz Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1690 ER - TY - CHAP A1 - Lehner, Karlheinz A1 - Hartmann, Dietrich T1 - Scenarios for the deployment of distributed engineering applications N2 - Although there are some good reasons to design engineering software as a stand-alone application for a single computer, there are also numerous possibilities for creating distributed engineering applications, in particular using the Internet. This paper presents some typical scenarios how engineering applications can benefit from including network capabilities. Also, some examples of Internet-based engineering applications are discussed to show how the concepts presented can be implemented. KW - Ingenieurbau KW - Verteiltes System KW - Planungsprozess KW - Modellierung KW - Internet Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1476 ER - TY - CHAP A1 - Mundani, Ralf-Peter A1 - Bungartz, Hans-Joachim T1 - Octrees for Cooperative Work in a Network-Based Environment N2 - Assuring global consistency in a cooperative working environment is the main focus of many nowaday research projects in the field of civil engineering and others. In this paper, a new approach based on octrees will be discussed. It will be shown that by the usage of octrees not only the management and control of processes in a network-based working environment can be optimised but also an efficient integration platform for processes from various disciplines – such as architecture and civil engineering – can be provided. By means of an octree-based collision detection resp. consistency assurance a client-server-architecture will be described as well as sophisticated information services for a further support of cooperative work. KW - Ingenieurbau KW - Verteiltes System KW - Planungsprozess KW - Modellierung KW - Oktalbaum Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1460 ER - TY - CHAP A1 - van Rooyen, G.C. A1 - Olivier, A. H. T1 - Notes on structural analysis in a distributed collaboratory N2 - The worldwide growth of communication networks and associated technologies provide the basic infrastructure for new ways of executing the engineering process. Collaboration amongst team members seperated in time and location is of particular importance. Two broad themes can be recognized in research pertaining to distributed collaboration. One theme focusses on the technical and technological aspects of distributed work, while the other emphasises human aspects thereof. The case of finite element structural analysis in a distributed collaboratory is examined in this paper. An approach is taken which has its roots in human aspects of the structural analysis task. Based on experience of how structural engineers currently approach and execute this task while utilising standard software designed for use on local workstations only, criteria are stated for a software architechture that could support collaborative structural analysis. Aspects of a pilot application and the results of qualitative performance measurements are discussed. KW - Ingenieurbau KW - Verteiltes System KW - Planungsprozess KW - Modellierung KW - Finite-Elemente-Methode Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1451 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 - TY - CHAP A1 - Schley, Frank A1 - Mejstrik, Marcus A1 - Holz, K.-Peter T1 - Network Based Co-operation Platform for Geotechnical Engineering N2 - This paper describes an approach to support co-operation of experts in heterogeneous geotechnical engineering project environments during both regular execution and handling of exceptional situations. A co-operation platform is introduced which is based on a generalized information model mapping key information about the construction project, the construction process as well as the organization structure. Several tools are provided to operate the information model in a network based environment. KW - Ingenieurbau KW - Verteiltes System KW - Planungsprozess KW - Modellierung KW - Geotechnik Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1431 ER - TY - CHAP A1 - Eslimy-Isfahany, S. H. R. A1 - Pegels, Georg T1 - Net-distributed Co-operation Including Developing Countries, Practical Case Study - Iran N2 - The scientific transfer of key technology features to developing countries, together with adequate competence, localisation and adaptation, is the primary purpose of the proposed investigation. It is evident that introducing high-level CAD design and detailing will improve the planning process in developing countries. Successful utilization of applied information technology for the planning process, however, depends on the user-interface of individual software. Therefore, to open the great opportunity embedded in CAD software for clients globally, the language and character-set barrier of traditional user-interfaces must be overcome. A proposal for a research program is given here to address such issue in favour of global civil engineering. KW - Ingenieurbau KW - Verteiltes System KW - Planungsprozess KW - Modellierung KW - Iran Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1421 ER - TY - THES A1 - Richter, Torsten T1 - Konzepte für den Einsatz versionierter Objektmodelle im Bauwesen T1 - Concepts for the application of versioned object models in the building industry N2 - Bauwerke sind in der Regel Unikate, für die meist eine komplette und aufwändige Neuplanung durchzuführen ist. Der Umfang und die Verschiedenartigkeit der einzelnen Planungsaufgaben bedingen ein paralleles Arbeiten der beteiligten Fachplaner. Darüber hinaus ist die Bauplanung ein kreativer und iterativer Prozess, der durch häufige Änderungen des Planungsmaterials und Abstimmungen zwischen den Fachplanern gekennzeichnet ist. Mithilfe von speziellen Fachanwendungen erstellen die Planungsbeteiligten verschiedene Datenmodelle, zwischen denen fachliche Abhängigkeiten bestehen. Ziel der Arbeit ist es, die Konsistenz der einzelnen Fachmodelle eines Bauwerks sicherzustellen, indem Abhängigkeiten auf Basis von Objektversionen definiert werden. Voraussetzung dafür ist, dass die Fachanwendungen nach dem etablierten Paradigma der objektorientierten Programmierung entwickelt wurden. Das sequentielle und parallele Arbeiten mehrerer Fachplaner wird auf Basis eines optimistischen Zugriffsmodells unterstützt, das ohne Schreibsperren auskommt. Weiterhin wird die Historie des Planungsmaterials gespeichert und die Definition von rechtsverbindlichen Freigabeständen ermöglicht. Als Vorbild für die Systemarchitektur diente das Softwarekonfigurationsmanagement, dessen Versionierungsansatz meist auf einem Client-Server-Modell beruht. Die formale Beschreibung des verwendeten Ansatzes wird über die Mengenlehre und Relationenalgebra vorgenommen, so dass er allgemeingültig und technologieunabhängig ist. Auf Grundlage dieses Ansatzes werden Konzepte für den Einsatz versionierter Objektmodelle im Bauwesen erarbeitet und mit einer Pilotimplementierung basierend auf einer Open-Source-Ingenieurplattform an einem praxisnahen Szenario verifiziert. Beim Entwurf der Konzepte wird besonderer Wert auf die Handhabbarkeit der Umsetzung gelegt. Das betrifft im Besonderen die hierarchische Strukturierung des Projektmaterials, die ergonomische Gestaltung der Benutzerschnittstellen und der Erzielung von geringen Anwortzeiten. Diese Aspekte sind eine wichtige Voraussetzung für die Effizienz und Akzeptanz von Software im praktischen Einsatz. Bestehende Fachanwendungen können durch geringen Entwicklungsaufwand einfach in die verteilte Umgebung integriert werden, ohne sie von Grund auf programmieren zu müssen. N2 - Structures are normally unique which often require a new, complete and complex design. The extensiveness and diverseness of the several planning tasks cause a parallel work of the involved planners. Furthermore, the building planning is a creative and iterative process that is characterised by frequent changes of the planning material and coordinations between the professional designers. The planners create different data models with dependencies between each other. The aim of this thesis is to ensure the consistency of the particular expert models by defining dependencies on the basis of object versions. A prerequisite is the development of all specialised applications with the established object-oriented programming paradigm. The sequential and parallel work of many planners is supported by an optimistic access model that does not require write locks. The history of the planning material will be stored additionally and the definition of release states is provided. The software configuration management served as a model for the system architecture whose versioning approach often relies on the client-server concept. The formal description of the used approach is done by the usage of the set theory and relational algebra to ensure its generality and independency from technologies. On the basis of this approach concepts for the application of versioned object models in civil engineering are formulated and verified at a practical scenario with a pilot implementation based on an open source engineering platform. A great importance was attached on the usability of the implementation. This affects especially the structuring of the project material, the ergonomic design of the user interface as well as the achievement of short response times. These aspects are a precondition for the efficiency and acceptance of the software by the practical users. Existing expert applications can be easily integrated in the distributed environment without programming them from scratch. T3 - Informatik in Architektur und Bauwesen - 3 KW - Computer Supported Cooperative Work KW - Objektorientierung KW - Bauplanung KW - Kooperation KW - Verteiltes System KW - Versionsverwaltung KW - Planungsprozess KW - Benut KW - Distributed computing KW - Computer Supported Cooperative Work KW - Object-oriented programming KW - Version control KW - Planning process Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20100115-14935 ER -