Communication

Advances in Communication Networking: 20th EUNICE/IFIP EG - download pdf or read online

By Yvon Kermarrec

ISBN-10: 3319134876

ISBN-13: 9783319134871

ISBN-10: 3319134884

ISBN-13: 9783319134888

This e-book constitutes the refereed complaints of the twentieth EUNICE/IFIP WG 6.2, 6.6 Workshop on Advances in conversation Networking, EUNICE 2014, held in Rennes, France, in September 2014. The 21 papers awarded have been rigorously reviewed and chosen from various submissions and current features within the box of knowledge and verbal exchange technologies.

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Read Online or Download Advances in Communication Networking: 20th EUNICE/IFIP EG 6.2, 6.6 International Workshop, Rennes, France, September 1-5, 2014, Revised Selected Papers PDF

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Extra resources for Advances in Communication Networking: 20th EUNICE/IFIP EG 6.2, 6.6 International Workshop, Rennes, France, September 1-5, 2014, Revised Selected Papers

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In this paper, we will be introducing industry standards from another domain, network management, which have been benefiting from various established standards. The purpose of this introduction is to briefly describe the evolution of management standards from a different domain and discuss what the power engineering community can learn from them. Then, we will be exploring the IEC CIM and the DMTF CIM [4] developed by the Distributed Management Task Force (DMTF) as used in network management. The DMTF CIM is similar to the IEC CIM in many ways but with some advantages that the IEC CIM lacks.

1, are used to relay the sensors’ collected data to the sink. Each sensor is equipped with a short-range acoustic modem, and a battery of limited power. Cluster heads, however, have more powerful battery and higher communication capabilities. The sensors, cluster heads, and the sink communicate with one another through acoustic modems. Since the sensors’ transmission range is short, they cannot communicate with the sink directly. Thus, they first send Consensus Based Report-Back Protocol 29 the collected data to a nearby cluster head which will relay the data to the sink.

T, (4) 32 A. Chilwan et al. where ci is some coefficient of the battery discharge. Note that this coefficient includes communication overhead (energy that is spent on observations about sensor energy level and its neighbors’ energy levels) as well. i rt+1 = rti − sit 1{|uit |)>0} hi pit ; i ∈ N, t = kτl , (5) where uit are control actions, hi is the coefficient of energy loss in the communication session, and 1{·} is the characteristic function such as 1, if A is true, 0, otherwise. 1{A} = i We assume, that if t = kτl , l = 1, 2 then rt+1 = rti .

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Advances in Communication Networking: 20th EUNICE/IFIP EG 6.2, 6.6 International Workshop, Rennes, France, September 1-5, 2014, Revised Selected Papers by Yvon Kermarrec


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