The Performance Power Grid


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The Performance Power Grid


The Performance Power Grid

Author: David F. Giannetto

language: en

Publisher: John Wiley & Sons

Release Date: 2007-01-22


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Performance Power Grid uses the metaphor of an actual electrical grid to explain how business leaders can maximize the way their people interact and work together. It offers a framework that helps managers channel the energy of employees into the proper tasks, processes, and projects, leading to higher productivity and more team focus on the jobs that truly matter.

Superconductors in the Power Grid


Superconductors in the Power Grid

Author: C. Rey

language: en

Publisher: Woodhead Pub Limited

Release Date: 2015-04-23


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Superconductors offer high throughput with low electric losses and have the potential to transform the electric power grid. Transmission networks incorporating cables of this type could, for example, deliver more power and enable substantial energy savings. Superconductors in the Power Grid: Materials and Applications provides an overview of superconductors and their applications in power grids. Sections address the design and engineering of cable systems and fault current limiters and other emerging applications for superconductors in the power grid, as well as case studies of industrial applications of superconductors in the power grid. Expert editor from highly respected US government-funded research centre Unique focus on superconductors in the power grid Comprehensive coverage

High Performance Computing in Power and Energy Systems


High Performance Computing in Power and Energy Systems

Author: Siddhartha Kumar Khaitan

language: en

Publisher: Springer Science & Business Media

Release Date: 2012-09-13


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The twin challenge of meeting global energy demands in the face of growing economies and populations and restricting greenhouse gas emissions is one of the most daunting ones that humanity has ever faced. Smart electrical generation and distribution infrastructure will play a crucial role in meeting these challenges. We would need to develop capabilities to handle large volumes of data generated by the power system components like PMUs, DFRs and other data acquisition devices as well as by the capacity to process these data at high resolution via multi-scale and multi-period simulations, cascading and security analysis, interaction between hybrid systems (electric, transport, gas, oil, coal, etc.) and so on, to get meaningful information in real time to ensure a secure, reliable and stable power system grid. Advanced research on development and implementation of market-ready leading-edge high-speed enabling technologies and algorithms for solving real-time, dynamic, resource-critical problems will be required for dynamic security analysis targeted towards successful implementation of Smart Grid initiatives. This books aims to bring together some of the latest research developments as well as thoughts on the future research directions of the high performance computing applications in electric power systems planning, operations, security, markets, and grid integration of alternate sources of energy, etc.