Refine
Document Type
- Conference Proceeding (4)
- Article (1)
- Part of a Book (1)
- Contribution to a Periodical (1)
- doctorallecture (1)
- Doctoral Thesis (1)
- Internet Paper (1)
- Report (1)
- Working Paper (1)
Is part of the Bibliography
- no (12)
Keywords
- Architektur (1)
- Blockchain (1)
- Blockchaintechnologie (1)
- DMS (1)
- Datenpflege (1)
- Dokumentenmanagement (1)
- Elektromobilität (1)
- Energieeffizienz (1)
- Energieflexibilitäten (1)
- Energieinformationssysteme (1)
Institute
Ziel des vorliegenden Whitepapers ist es, dem Leser einen Einblick in das Themengebiet Stammdatenmanagement zu gewähren. Anfangs werden
hierfür das Stammdatenthema vorgestellt und die Grundlagen beschrieben. Ferner werden die einzelnen Handlungsfelder und Gestaltungsbereiche
aufgezeigt. Ein weiterer Abschnitt widmet sich der Schnittstelle zwischen Big Data und Stammdaten. Letztendlich liefert das Whitepaper eine Vorgehensweise, um systematisch die Stammdatenqualität zu optimieren und nachhaltiges SDM im Unternehmen zu etablieren.
Increasing the energy efficiency and meanwhile avoiding unplanned maintenance breaks are keys for manufacturing companies to stay competitive in the future. This paper presents an energy saving and maintenance cost reducing approach for manufacturing environments. The approach describes first occurring types of energy wastage within manufacturing and characterizes them in more detail. Including additional external information, the significance of an identified on-going wastage can be determined. Based on the type of wastage and the significance; concrete recommendations for measures to prevent the wastage are delivered. The identified wastage facilitates detecting inefficient operating mode as well as wearing and malfunctioning at machines. By using complex event processing technologies realtime information can forwarded directly to the responsible persons to enable quick reactions to prevent energy wastage and unplanned downtimes. The paper presents an approach to identify detection and propose concepts for manufacturing enterprises. The information processing procedure is used for the implementation of two Use Cases.
In this paper, an approach towards energy management 4.0 will be presented. Energy management 4.0 is understood as an encompassing energy data based concept for manufacturing companies acting in an flexible energy grid of the future with the final goal of autonomous self-optimization Controlling, supervising and scheduling production and logistic steps based on a reliable communication infrastructure and real time data in accordance to achieve a maximum of profitability with regard to human factor is executed.
Guided by a four maturity levels of the "acatech Industrie 4.0 Maturity Index" developed by the German National Academy of Science and Engineering (acatech) different use cases are presented according to the steps of visibility, transparency, prognostic capacity and self-optimization. The basic idea of energy management 4.0 is described and an outlook of further steps that are needed to be evaluated for an implementation are presented.
Die vorliegende Publikation beinhaltet die Projektergebnisse des Forschungsprojekts „FlAixEnergy – Innovative Energieflexibilitätsplattform zur Synchronisation und Vermarktung des regionalen Stromverbrauchs industrieller Anwender mit dezentraler Energieerzeugung in der Modellregion Aachen“ (Förderkennzeichen 0325819A-I). Dieses Forschungs- und Entwicklungsprojekt wurde mit Mitteln des Bundesministeriums für Wirtschaft und Energie (BMWi) gefördert und vom Projektträger Jülich (PTJ) betreut. Die Autoren sind für den Inhalt der Veröffentlichung verantwortlich.
In order to introduce load management in the manufacturing industry, some obstacles need to be pointed out. This paper presents a feasible approach on how to implement load management measures in companies. To do so, load management and energy management are explained and distinguished in a first step. Subsequently, the implementation method is introduced. Therefore, by using this paper, companies will be enabled to use load management measure and reduce their energy costs significantly.
Die digitale Transformation in Unternehmen bewirkt einen stetigen Anstieg der Datenmengen auf allen Unternehmensebenen. Die Nutzung dieser Daten und deren Veredlung zu Informationen gestalten sich aufgrund der historisch gewachsenen IT-Komplexität jedoch zunehmend als strukturelle und organisatorische Herausforderung. Das Potenzial der digitalen Transformation, schnellere und bessere Entscheidungen auf Basis von Analysen der vorliegenden Datenbasis zu treffen, bleibt damit oftmals hinter den Erwartungen zurück. Unternehmen sind daher gefordert, Strukturen und Fähigkeiten zur Beherrschung der Ressource Information zu gestalten. Die Informationslogistik stellt einen essenziellen Baustein dar, um interne und externe Informationsflüsse effektiv und effizient nutzbar zu machen.
Due to the drastically increasing amount of data, decision making in companies heavily relies on having the right data available. Also because of an increasing complexity of structures and processes, quick and precise flows of information become more important.
This paper introduces a new approach for modelling information flows, creating a basis for an efficient information management. It can be used to structure the information requirements and identify gaps within the information processing.
To display its benefits, the proposed Information Logistics Notation (ILN) is applied to the information logistics of todays and future energy market and grid stability management, both processes of increasing complexity.
In order to introduce load management in the manufacturing industry, some obstacles need to be pointed out. This paper presents a feasible approach on how to implement load management measures in companies.
To this end, load management and energy management are explained and distinguished in a first step. Subsequently, the implementation method is introduced. Therefore, by means of this paper, companies will be enabled to use load management measures and significantly reduce their energy costs. In the second part of the paper, the introduced approach will be applied.
Hence, a use case of a manufacturing company is described. Alongside energy analyses with consumption data, specific measures are presented.
Ziel dieser Dissertation war die Entwicklung eines Modells zur Unterstützung produzierender Unternehmen und Lösungsanbieter bei der Umsetzung eines Energieinformationssystems. Dazu werden die Anwendungsfälle auf Basis von Energieinformationen strukturiert, die Komponenten des Informationssystems mithilfe einer Ontologie abgebildet und die Informationsflüsse in einem Informationslogistikmodell abgebildet. Schließlich wird ein Vorgehen zur Anwendung der Modelle dargestellt und validiert.