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Título de Acceso Abierto
Evaluation of Energy Efficiency and Flexibility in Smart Buildings
Resumen/Descripción – provisto por la editorial
No disponible.
Palabras clave – provistas por la editorial
real-time optimal control; system coefficient of performance; event-driven optimal control; building energy efficiency; heat wheel; direct expansion cooling; ventilation system; energy consumption; load forecast fuzzy (LFF) control; SVM method; building HVAC system; time delay effect; optimal control strategy; phase change material; hysteresis; simulations; EnergyPlus; thermal energy storage; green roofs; buildings; air conditioning; energy efficiency; mediterranean area; building energy consumption; building load forecasting; rough set theory; thermal improved of buildings; single-family house; detached house; energy renovation; deep retrofit; power demand; electric heating; ground-source heat pump; hybrid energy system; microgrid; military applications; renewable energy; remote areas; electricity; HVAC; demand forecasting; flexibility; office building; Smart Grid; fault correction; fault detection and diagnostics; building operation; field testing; nZEB, BIPV; room ventilation; dynamic thermal insulation; multi-parametric model; energy optimization; steady-state control; building energy control system; comfort and engineering; buidling simulation (EnergyPlus and MATLAB); long-term thermal energy storage; seasonal thermal energy storage; thermochemical energy storage; liquid sorption storage; power-to-heat; seasonal energy flexibility; seasonal load shifting; virtual battery effect; design-time optimization; cost modeling and simulation; cyber-physical system; electrical energy system; sustainable energy planning; sustainable power planning; design space exploration; SystemC-AMS; window frames; numerical analysis; hot box; sensitivity analysis; demand flexibility; control system; optimization; resiliency; smart buildings; distributed energy resources; model predictive control; data-driven model; artificial neural network; physical building model; energy flexibility; urban scale; building energy simulation; regression; building archetypes; energy performance of buildings; solar passive systems; low energy buildings; smart districts; smart grids; smart readiness indicator; energy performance of buildings directive; load shifting; demand response; building-integrated photovoltaics; BIPV; hidden coloured BIPV module; BIPV integration; photovoltaic; PV
Disponibilidad
| Institución detectada | Año de publicación | Navegá | Descargá | Solicitá |
|---|---|---|---|---|
| No requiere | Directory of Open access Books |
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Información
Tipo de recurso:
libros
ISBN electrónico
978-3-03943-850-1
País de edición
Suiza