
IEEE Vision for Smart Grid Communications: 2030 and Beyond Roadmap
STANDARD published on 3.9.2013
Designation standards: IEEE Smart Grid Research: Communications
Publication date standards: 3.9.2013
The number of pages: 19
Approximate weight : 57 g (0.13 lbs)
Country: International technical standard
Category: Technical standards IEEE
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This IEEE Vision for Smart Grid Communications: 2030 and Beyond Roadmap is a high-level supplement of the full vision document IEEE Vision for Smart Grid Communications: 2030 and Beyond. Communication is a major enabling technology for the Smart Grid. We believe that the power grid will tend to utilize advances in communications since the data exchange requirements will scale up for the Smart Grid. Smart Grid communication will help to improve demand forecasting, enable self-healing from power disturbance events, facilitate active participation by consumers in demand-response mechanisms, and provide resilience against physical and cyber attacks. Smart Grid communication will also help to improve quality of power, allow easy integration of renewable energy sources into the grid, foster innovation to enable new products, services, and markets, assist in optimization of assets, and improve operating efficiency. For Corporate or Institutional Access, request a custom quote for your organization at www.ieee.org/smartgridresearch
ISBN: 978-0-7381-8646-7, 978-0-7381-8647-4
Number of Pages: 19
Product Code: STDV98388, STDPDV98388
Keywords: Smart grid, Grid, IEEE Communications Society, vision, electrical grid, grid modernization, generation, transmission, distribution, load, consumer, operations, controls, cyber security, distributed resources, electric power system, grid architecture, grid operations, microgrid, communications, signal processing, wireless, power line communication, power line borne optical fiber, optical fiber, information theory, network science, networking, quality of service, overlay networks, data-level communications, peer-to-peer, P2P, standards, solid state transformers, beamed power, quantum key distribution.
Category: Information Theory