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In den WarenkorbZustand: New. pp. 152.
Verlag: Universitätsverlag Karlsruhe, 2009
ISBN 10: 3866443668 ISBN 13: 9783866443662
Sprache: Englisch
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In den WarenkorbPaperback. Zustand: Brand New. 142 pages. 7.80x5.91x0.39 inches. In Stock.
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Verlag: GRIN Verlag, GRIN Verlag Feb 2011, 2011
ISBN 10: 3640825616 ISBN 13: 9783640825615
Sprache: Englisch
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In den WarenkorbTaschenbuch. Zustand: Neu. Neuware -Doctoral Thesis / Dissertation from the year 2009 in the subject Business economics - Supply, Production, Logistics, grade: summa cum laude, University Karlsruhe (TH) (Institut für Fördertechnik und Logistiksysteme), language: English, abstract: To increase the flexibility of application of continuous conveyor systems, a completely decentralized control system for a modular conveyor system is introduced in the paper. This system is able to carry conveyor units without any centralized infrastructure. Based on existing methods of decentralized data transfer in IT networks, single modules operate autonomously and, after being positioned into the required topology, independently connect together to become a functioning conveyor system. Parallel to the development of the decentralized control system, identical square modules were developed, which in a compact unit contain all of the features necessary to function as a switch, junction or linear conveyor section. To fulfill this task, every module is equipped with an RFID identification system, sensors, a multi-directional drive, and a microcontroller-based control unit that executes the control algorithm.The following functions can be performed by these modules with the help of the innovative control algorithm:¿ Independent generation of the topological map in the form of routing tables¿ Recognition of an incoming conveyor unit and identification of the destination address¿ Planning of the path to the destination taking into consideration conveyor units already located in the system¿ Protection against collisions and deadlocks, and transportation of the conveyor unit to the next module¿ Autonomous regulation of the injection rate to ensure the highest possible throughputThe throughput performance of the control algorithm developed here was analyzed by simulating representative topologies. Furthermore, it was proven that under certain conditions, despite the conveyor routes being used in multiple directions, a situation can never arise where conveyor units block each other and the flow of material comes to a halt in the form of a deadlock.Books on Demand GmbH, Überseering 33, 22297 Hamburg 152 pp. Englisch.
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - Doctoral Thesis / Dissertation from the year 2009 in the subject Business economics - Supply, Production, Logistics, grade: summa cum laude, University Karlsruhe (TH) (Institut für Fördertechnik und Logistiksysteme), language: English, abstract: To increase the flexibility of application of continuous conveyor systems, a completely decentralized control system for a modular conveyor system is introduced in the paper. This system is able to carry conveyor units without any centralized infrastructure. Based on existing methods of decentralized data transfer in IT networks, single modules operate autonomously and, after being positioned into the required topology, independently connect together to become a functioning conveyor system. Parallel to the development of the decentralized control system, identical square modules were developed, which in a compact unit contain all of the features necessary to function as a switch, junction or linear conveyor section. To fulfill this task, every module is equipped with an RFID identification system, sensors, a multi-directional drive, and a microcontroller-based control unit that executes the control algorithm.The following functions can be performed by these modules with the help of the innovative control algorithm:-Independent generation of the topological map in the form of routing tables-Recognition of an incoming conveyor unit and identification of the destination address-Planning of the path to the destination taking into consideration conveyor units already located in the system-Protection against collisions and deadlocks, and transportation of the conveyor unit to the next module-Autonomous regulation of the injection rate to ensure the highest possible throughputThe throughput performance of the control algorithm developed here was analyzed by simulating representative topologies. Furthermore, it was proven that under certain conditions, despite the conveyor routes being used in multiple directions, a situation can never arise where conveyor units block each other and the flow of material comes to a halt in the form of a deadlock.
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In den WarenkorbTaschenbuch. Zustand: Neu. Development of a completely decentralized control system for modular continuous conveyors | Stephan Mayer | Taschenbuch | 152 S. | Englisch | 2011 | GRIN Verlag | EAN 9783640825615 | Verantwortliche Person für die EU: BoD - Books on Demand, In de Tarpen 42, 22848 Norderstedt, info[at]bod[dot]de | Anbieter: preigu.
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In den WarenkorbZustand: New. Print on Demand pp. 152 64:B&W 8.268 x 11.693 in or 297 x 210 mm (A4) Perfect Bound on White w/Gloss Lam.
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In den WarenkorbZustand: New. PRINT ON DEMAND pp. 152.
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In den WarenkorbTaschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Doctoral Thesis / Dissertation from the year 2009 in the subject Business economics - Supply, Production, Logistics, grade: summa cum laude, University Karlsruhe (TH) (Institut für Fördertechnik und Logistiksysteme), language: English, abstract: To increase the flexibility of application of continuous conveyor systems, a completely decentralized control system for a modular conveyor system is introduced in the paper. This system is able to carry conveyor units without any centralized infrastructure. Based on existing methods of decentralized data transfer in IT networks, single modules operate autonomously and, after being positioned into the required topology, independently connect together to become a functioning conveyor system. Parallel to the development of the decentralized control system, identical square modules were developed, which in a compact unit contain all of the features necessary to function as a switch, junction or linear conveyor section. To fulfill this task, every module is equipped with an RFID identification system, sensors, a multi-directional drive, and a microcontroller-based control unit that executes the control algorithm.The following functions can be performed by these modules with the help of the innovative control algorithm:-Independent generation of the topological map in the form of routing tables-Recognition of an incoming conveyor unit and identification of the destination address-Planning of the path to the destination taking into consideration conveyor units already located in the system-Protection against collisions and deadlocks, and transportation of the conveyor unit to the next module-Autonomous regulation of the injection rate to ensure the highest possible throughputThe throughput performance of the control algorithm developed here was analyzed by simulating representative topologies. Furthermore, it was proven that under certain conditions, despite the conveyor routes being used in multiple directions, a situation can never arise where conveyor units block each other and the flow of material comes to a halt in the form of a deadlock. 152 pp. Englisch.