Communication Networks for Smart Grids: Making Smart Grid by Kenneth C. Budka

By Kenneth C. Budka

This ebook provides an application-centric method of the advance of shrewdpermanent grid conversation structure. The insurance comprises in-depth reports of such state of the art functions as complex metering infrastructure, distribution automation, call for reaction and synchrophasors. positive factors: examines more than a few intriguing application functions made attainable via clever grid evolution; describes the core-edge community structure for clever grids, introducing the concept that of WANs and fanatics; explains how the community layout paradigm for shrewdpermanent grids differs from that for extra confirmed information networks, and discusses community protection in shrewdpermanent grids; presents an summary of conversation community applied sciences for WANs and lovers, protecting OPGW, PLC, and LTE and MPLS know-how; investigates safe data-centric info administration and knowledge analytics for shrewdpermanent grids; discusses the transformation of a community from traditional modes of application operation to an built-in community in accordance with the clever grid structure framework.

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As a result, data privacy is also an important element of network security. Scalability The network architecture should be scalable in that introduction of new Smart Grid applications should be possible with minimal changes in the physical network. As much as possible, introduction of new applications should require only minimal network configuration changes. Often at the beginning of a new application introduction, the utility may add only a few new endpoints. With proper planning, addition of a large number of application endpoints can be accommodated through capacity management.

Networking requirements for a utility network are different in many respects to those for NSP networks. NSP networks are primarily designed to support their customers’ multimedia applications, while the Smart Grid network must support mission-critical applications like SCADA, teleprotection, and synchrophasors in addition to many other applications. Reliability, security, and performance requirements for Smart Grid networks are more stringent than the corresponding requirements for enterprise networks.

Unified Network Management The Smart Grid network is an evolving network. To facilitate this evolution, the current set of networks must first be transformed to an integrated network. It will further evolve as new applications are introduced and endpoints added. The network will often be based on network elements (routers, switches) provided by different vendors. As a result, to provide a unified endto-end network management solution for network provisioning and configuration, troubleshooting and alarm correlation, maintenance workforce dispatch and management, capacity management, and network security, it is advisable for utilities 18 1 Introduction to Smart Grids to deploy operations support systems (OSSs) that will work with the element management systems from multiple vendors.

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