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Electric Power System Communication Traffic Modelling
The Electric Power System is one of the most complicated systems to be managed and oper-ated due its size, dynamic nature, fluctuations in demand and the large amount of heteroge-neous components and devices involved from the generation of electrical power to the trans-mission and distribution to the final consumer. The industry has been one of the earliest adopters of computer, information and other automation systems for the proper and efficient control and operation of the electrical power system.
The communication infrastructure is the foundation for remote operation and de-mands on this infrastructure are rapidly increasing. Demands for faster and more ac-curate real-time communication over wide geographical areas as well as international exchange of critical operational and business data coupled with the increasing trend towards TCP/IP as the main protocol could result in vastly unpredictable and vola-tile heterogeneous communication infrastructure.
Traffic Models help in understanding the demands and dynamics of communication in the network in order to adequately adapt or design the communication system to meet requirements or users and monitoring and control systems that utilize it. The purpose of this thesis project is to model the patterns and characteristics of commu-nication for real time monitoring and control of power systems, further more imple-ment these models in simulators such as OPNET.
Students of computer science, electrical engineering, engineering physics, IT and industrial economics are encouraged to apply to this Master thesis. Background / knowledge of performance analysis, communication systems and protocols and other relevant topics are a valuable advantage.
This thesis corresponds to 20 weeks of full time study.
To apply send your CV and list of relevant courses to Moustafa Chenine. The deadline for applications is 31st AUGUST 2007
Informationen om uppsatsförslag är hämtad från Nationella Exjobb-poolen.