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Cyber-physical cloud computing: the binding and migration problem

Christoph M. Kirsch, Elói Pereira, Raja Sengupta, Haochong Chen, R. Hansen, Jian Huang, F. Landolt, Michael Lippautz, Andreas Rottmann, Robert A. Swick, Rainer Trummer, Daniel Vizzini

Year
2012
Citations
12

Abstract

We take the paradigm of cloud computing developed in the cyber-world and put it into the physical world to create a cyber-physical computing cloud. A server in this cloud moves in space making it a vehicle with physical constraints. Such vehicles also have sensors and actuators elevating mobile sensor networks from a deployment to a service. Possible hosts include cars, planes, people with smartphones, and emerging robots like unmanned aerial vehicles or drifters. We extend the notion of a virtual machine with a virtual speed and call it a virtual vehicle, which travels through space by being bound to real vehicles and by migrating from one real vehicle to another in a manner called cyber-mobility. We discuss some of the challenges and envisioned solutions, and describe our prototype implementation.

Keywords

Cloud computingComputer scienceSoftware deploymentCyber-physical systemVirtual machineService (business)Distributed computingComputer securityReal-time computingOperating system

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