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Methods and Concepts for Designing and Validating Smart Grid Systems

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

web of cells; IHE; distribution grid; accuracy; use cases; Development; synchrophasors; underground cabling; solar photovoltaics (PV); laboratory testbed; conceptual structuration; Quasi-Dynamic Power-Hardware-in-the-Loop; coupling method; time synchronization; smart energy systems; substation automation system (SAS); testing; investment; time delay; interface algorithm (IA); PHIL (power hardware in the loop); network outage; operational range of PHIL; wind power; elastic demand bids; Model-Based Software Engineering; Enterprise Architecture Management; plug-in electric vehicle; Smart Grid Architecture Model; linear/switching amplifier; pricing scheme; average consensus; traffic reduction technique; cell; gazelle; smart grids control strategies; real-time simulation and hardware-in-the-loop experiments; 4G Long Term Evolution—LTE; power loss allocation; cyber-physical energy system; experimentation; microgrid; resilience; integration profiles; remuneration scheme; renewable energy sources; shiftable loads; droop control; Power-Hardware-in-the-Loop; peer-to-peer; validation techniques for innovative smart grid solutions; frequency containment control (FCC); synchronous power system; power frequency characteristic; development and implementation methods for smart grid technologies; cascading procurement; IEC 62559; device-to-device communication; DC link; validation and testing; information and communication technology; TOGAF; battery energy storage system (BESS); active distribution network; stability; Validation; synchronized measurements; Architecture; locational marginal prices; SGAM; network reconfiguration; interoperability; seamless communications; fault management; real-time simulation; System-of-Systems; market design elements; micro combined heat and power (micro-CHP); co-simulation-based assessment methods; islanded operation; connectathon; Software-in-the-Loop; voltage control; electricity distribution; distribution phasor measurement units; centralised control; data mining; robust optimization; modelling and simulation of smart grid systems; hardware-in-the-Loop; smart grids; cyber physical co-simulation; design; decentralised energy system; procurement scheme; Smart Grid; smart grid; distributed control; fuzzy logic; Power Hardware-in-the-Loop (PHIL); simulation initialization; multi-agent system; adaptive control; real-time balancing market; co-simulation; optimal reserve allocation; Web-of-Cells; Hardware-in-the-Loop; micro-synchrophasors; linear decision rules; synchronization; hardware-in-the-loop; PMU; high-availability seamless redundancy (HSR); market design; demand response

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-03921-649-9

País de edición

Suiza