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Reliable and resilient access network design for advanced metering infrastructures in smart grid
by
Qingyang Hu, Rose
, Xu, Shengjie
, Qian, Yi
in
Advanced metering infrastructure
/ advanced metering infrastructures
/ AMI access network
/ assured data transmission
/ basic network topology
/ Communication
/ communication architectures
/ communication deployment cost
/ communication failures
/ Communications networks
/ computer network reliability
/ Cost analysis
/ current communication architecture
/ Data analysis
/ Failure
/ high communication robustness
/ incremental network design
/ Incremental networks
/ information delivery
/ Infrastructure
/ legacy networks
/ network connectivity problems
/ Network design
/ network failures
/ Network reliability
/ Network topologies
/ network topology
/ Redundancy
/ reliability
/ Reliability analysis
/ reliability study
/ reliable access network design
/ reliable networks
/ resilient access network design
/ resilient communications
/ robust communications
/ Robustness (mathematics)
/ single link reliability
/ Smart grid
/ Smart meters
/ smart power grids
/ subscriber loops
/ System reliability
/ telecommunication network reliability
/ telecommunication network topology
/ traditional access network structure
/ trees (mathematics)
/ Wide area networks
2018
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Reliable and resilient access network design for advanced metering infrastructures in smart grid
by
Qingyang Hu, Rose
, Xu, Shengjie
, Qian, Yi
in
Advanced metering infrastructure
/ advanced metering infrastructures
/ AMI access network
/ assured data transmission
/ basic network topology
/ Communication
/ communication architectures
/ communication deployment cost
/ communication failures
/ Communications networks
/ computer network reliability
/ Cost analysis
/ current communication architecture
/ Data analysis
/ Failure
/ high communication robustness
/ incremental network design
/ Incremental networks
/ information delivery
/ Infrastructure
/ legacy networks
/ network connectivity problems
/ Network design
/ network failures
/ Network reliability
/ Network topologies
/ network topology
/ Redundancy
/ reliability
/ Reliability analysis
/ reliability study
/ reliable access network design
/ reliable networks
/ resilient access network design
/ resilient communications
/ robust communications
/ Robustness (mathematics)
/ single link reliability
/ Smart grid
/ Smart meters
/ smart power grids
/ subscriber loops
/ System reliability
/ telecommunication network reliability
/ telecommunication network topology
/ traditional access network structure
/ trees (mathematics)
/ Wide area networks
2018
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Do you wish to request the book?
Reliable and resilient access network design for advanced metering infrastructures in smart grid
by
Qingyang Hu, Rose
, Xu, Shengjie
, Qian, Yi
in
Advanced metering infrastructure
/ advanced metering infrastructures
/ AMI access network
/ assured data transmission
/ basic network topology
/ Communication
/ communication architectures
/ communication deployment cost
/ communication failures
/ Communications networks
/ computer network reliability
/ Cost analysis
/ current communication architecture
/ Data analysis
/ Failure
/ high communication robustness
/ incremental network design
/ Incremental networks
/ information delivery
/ Infrastructure
/ legacy networks
/ network connectivity problems
/ Network design
/ network failures
/ Network reliability
/ Network topologies
/ network topology
/ Redundancy
/ reliability
/ Reliability analysis
/ reliability study
/ reliable access network design
/ reliable networks
/ resilient access network design
/ resilient communications
/ robust communications
/ Robustness (mathematics)
/ single link reliability
/ Smart grid
/ Smart meters
/ smart power grids
/ subscriber loops
/ System reliability
/ telecommunication network reliability
/ telecommunication network topology
/ traditional access network structure
/ trees (mathematics)
/ Wide area networks
2018
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Reliable and resilient access network design for advanced metering infrastructures in smart grid
Journal Article
Reliable and resilient access network design for advanced metering infrastructures in smart grid
2018
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Overview
Maintaining a high overall network reliability remains one of the most critical requirements for advanced metering infrastructures (AMIs) in smart grid. Ensuring reliable networks not only determines the robust communications of an AMI, but also guarantees assured information delivery in the access network. To prevent any communication failures, incremental designs based on legacy networks should be carried out in advance to improve the overall redundancy. Current communication architecture of an AMI follows a traditional access network structure with a tree‐based topology, which does not always satisfy high robustness and is prone to network failures. To address the challenge, this study conducts a reliability study of the access network in an AMI. Specifically, this study first examines the basic network topology adopted in an AMI access network and its underlying connectivity issues. Secondly, this study proposes two practical solutions as parts of incremental network design to improve the communication robustness of existing communication architectures. Thirdly, mathematical models are formulated to solve network connectivity problems, for maintaining a high overall network reliability, while minimising the communication deployment cost at the same time. Simulation results are provided from the aspects of minimal path sets and minimal cut sets to demonstrate the redundancy analysis.
Publisher
The Institution of Engineering and Technology,John Wiley & Sons, Inc,Wiley
Subject
Advanced metering infrastructure
/ advanced metering infrastructures
/ communication deployment cost
/ computer network reliability
/ current communication architecture
/ Failure
/ high communication robustness
/ network connectivity problems
/ reliable access network design
/ resilient access network design
/ telecommunication network reliability
/ telecommunication network topology
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