Digital Supply Chain (E)
Niveau
First cycle, Bachelor
Learning outcomes of the courses/module
The participants are able to:
• identify remits and contents of logistics.
• explain the meaning of processing time and stock.
• identify key figures to measure the logistics performance, logistics costs and flexibility.
• describe concepts, their potential use and their advantages / disadvantages and limits.
• define targets based on key requirements and select adequate concepts for them.
• work on basic tasks of logistics on their own.
• understand the technical structure of an information system
• identify ERP enterprise architecture and terminology
• understand the complexity of an integrated ERP system and the most important interfaces
• understand the impact of AI and know valuable Use Cases.
• identify remits and contents of logistics.
• explain the meaning of processing time and stock.
• identify key figures to measure the logistics performance, logistics costs and flexibility.
• describe concepts, their potential use and their advantages / disadvantages and limits.
• define targets based on key requirements and select adequate concepts for them.
• work on basic tasks of logistics on their own.
• understand the technical structure of an information system
• identify ERP enterprise architecture and terminology
• understand the complexity of an integrated ERP system and the most important interfaces
• understand the impact of AI and know valuable Use Cases.
Prerequisites for the course
not applicable
Course content
Logistics:
• Goals and conflicting goals in logistics against the background of the following framework conditions
• Levels of logistics (functional service function, coordination, flow rationing, supply chain)
• Storage/warehousing
• Demand planning
• Internal and external transport
• ABC/XYZ analysis
• Approaches like Kanban, JIT/JIS, value stream analysis
• Order picking
• Types of order control
• Procurement, production, distribution and disposal logistics
• Supply chain management
• Procurement, production, distribution and disposal logistics
• Supply chain management
Information Systems:
• ERP lifecycle management
• ERP enterprise resource planning
• SCM supply chain management
• CRM (customer relation management)
• Production planning and control
• Application integration, long-term archiving
• PDM (Product data management)
• PLM (Product Lifecycle Management)
• Goals and conflicting goals in logistics against the background of the following framework conditions
• Levels of logistics (functional service function, coordination, flow rationing, supply chain)
• Storage/warehousing
• Demand planning
• Internal and external transport
• ABC/XYZ analysis
• Approaches like Kanban, JIT/JIS, value stream analysis
• Order picking
• Types of order control
• Procurement, production, distribution and disposal logistics
• Supply chain management
• Procurement, production, distribution and disposal logistics
• Supply chain management
Information Systems:
• ERP lifecycle management
• ERP enterprise resource planning
• SCM supply chain management
• CRM (customer relation management)
• Production planning and control
• Application integration, long-term archiving
• PDM (Product data management)
• PLM (Product Lifecycle Management)
Recommended specialist literature
• Gudehus (2012): Logistics 1: Grundlagen, Verfahren und Strategien, 4th Edition, Springer Verlag Berlin
• Gudehus (2012): Logistics 2: Netzwerke, Systeme und Lieferketten, 4th Edition, Springer Verlag Berlin
• Cohen, Roussel (2006): Strategisches Supply Chain Management, 1st edition, Springer Verlag Berlin
• Kummer, Grün, Jammernegg (2013): Grundzüge der Beschaffung, Produktion und Logistik, 3rd edition, Pearson
• Pfohl (2010): Logistiksysteme: Betriebswirtschaftliche Grundlagen, 8th Edition, Springer Verlag Berlin
• Erlach(2010): Wertstromdesign: Der Weg zur schlanken Fabrik, 2nd Edition, Springer Verlag Berlin Wertstromdesign: Der Weg zur schlanken Fabrik, 2. Aufl., Springer Verlag Berlin
• Sendler, Wawer (2007): CAD und PDM: Prozessoptimierung durch Integration, 2. Aufl., Carl Hanser Verlag München
• Frick (2007): Grundkurs SAP ERP: Geschäftsprozessorientierte Einführung Mit Durchgehendem Fallbeispiel, Vieweg+Teubner Verlag Wiesbaden
• Gronau (2010): Enterprise Resource Planning: Architektur, Funktionen und Management von ERP-Systemen, Oldenborg Wissenschaftsverlag München
• Kurbel (2010): Enterprise Resource Planning und Supply Chain Management in der Industrie, Oldenbourg Wissenschaftsverlag München
• Scheer (1998): ARIS vom Geschäftsprozess zum Anwendungssystem, 3. Aufl., Springer Verlag Berlin
• Gudehus (2012): Logistics 2: Netzwerke, Systeme und Lieferketten, 4th Edition, Springer Verlag Berlin
• Cohen, Roussel (2006): Strategisches Supply Chain Management, 1st edition, Springer Verlag Berlin
• Kummer, Grün, Jammernegg (2013): Grundzüge der Beschaffung, Produktion und Logistik, 3rd edition, Pearson
• Pfohl (2010): Logistiksysteme: Betriebswirtschaftliche Grundlagen, 8th Edition, Springer Verlag Berlin
• Erlach(2010): Wertstromdesign: Der Weg zur schlanken Fabrik, 2nd Edition, Springer Verlag Berlin Wertstromdesign: Der Weg zur schlanken Fabrik, 2. Aufl., Springer Verlag Berlin
• Sendler, Wawer (2007): CAD und PDM: Prozessoptimierung durch Integration, 2. Aufl., Carl Hanser Verlag München
• Frick (2007): Grundkurs SAP ERP: Geschäftsprozessorientierte Einführung Mit Durchgehendem Fallbeispiel, Vieweg+Teubner Verlag Wiesbaden
• Gronau (2010): Enterprise Resource Planning: Architektur, Funktionen und Management von ERP-Systemen, Oldenborg Wissenschaftsverlag München
• Kurbel (2010): Enterprise Resource Planning und Supply Chain Management in der Industrie, Oldenbourg Wissenschaftsverlag München
• Scheer (1998): ARIS vom Geschäftsprozess zum Anwendungssystem, 3. Aufl., Springer Verlag Berlin
Assessment methods and criteria
Portfolio exam
Language
English
Number of ECTS credits awarded
5
Semester hours per week
Planned teaching and learning method
Lecture
Semester/trimester in which the course/module is offered
4