LEADER 04851nam 2201201z- 450 001 9910372783903321 005 20210212 010 $a3-03928-047-3 035 $a(CKB)4100000010163787 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/60339 035 $a(oapen)doab60339 035 $a(EXLCZ)994100000010163787 100 $a20202102d2020 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aSustainable Energy Systems Planning, Integration and Management 210 $cMDPI - Multidisciplinary Digital Publishing Institute$d2020 215 $a1 online resource (286 p.) 311 08$a3-03928-046-5 330 $aEnergy systems worldwide are undergoing major transformation as a consequence of the transition towards the widespread use of clean and sustainable energy sources. Basically, this involves massive changes in technical and organizational levels together with tremendous technological upgrades in different sectors ranging from energy generation and transmission systems down to distribution systems. These actions generate huge science and engineering challenges and demands for expert knowledge in the field to create solutions for a sustainable energy system that is economically, environmentally, and socially viable while meeting high security requirements. This book covers these promising and dynamic areas of research and development, and presents contributions in sustainable energy systems planning, integration, and management. Moreover, the book elaborates on a variety of topics, ranging from design and planning of small- to large-scale energy systems to the operation and control of energy networks in different sectors, namely electricity, heat, ?and transport. 606 $aHistory of engineering and technology$2bicssc 610 $aagricultural pruning 610 $aBlack Sea 610 $aconfigurations of internal wall 610 $acontrol system 610 $acuckoo search algorithm 610 $adatacenter 610 $ademand response 610 $adual robust optimization 610 $aelectric power 610 $aenergy 610 $aenergy and environmental systems 610 $aenergy consumption 610 $aensemble empirical mode decomposition 610 $aenvironment 610 $aFANP 610 $afeature extraction 610 $afield test and numerical simulation 610 $aforecasting validity 610 $afuzzy logic 610 $agradient descent 610 $aheat storage and release 610 $aheat transfer 610 $ahot summer and cold winter climate zone 610 $ainformation gap decision theory (IGDT) 610 $ainformation platform 610 $aintermittent heating 610 $ainternal coverings 610 $aload regulation 610 $aMCDM 610 $ameteorological variables 610 $amixed-integer non-linear programming problem (MINLP) 610 $amulti-type bus operating organization 610 $amultiple uncertainties 610 $an/a 610 $aneural networks 610 $anon-intrusive load monitoring 610 $anovel method 610 $anumerical models 610 $aoptimal chiller loading (OCL) 610 $aperformance evaluation 610 $aphotovoltaic systems 610 $aproduct quality model 610 $aproduct usability testing 610 $apruning biomass 610 $apublic transport 610 $apure electric buses 610 $arenewable biomass energy 610 $arenewable energy 610 $aresampling 610 $arisk aversion 610 $aRomanian coastal environment 610 $arural residential building 610 $asmart box 610 $asmart grid 610 $asmart logistics system 610 $asolar energy 610 $asolid waste to energy plant 610 $asupport vector machine 610 $asustainable development 610 $aSWAN 610 $athermal comfort 610 $athreshold value of daily operation hours 610 $atime-space network 610 $aTOPSIS 610 $auncertain cooling demand 610 $avehicular emissions 610 $awave energy 610 $awind speed forecasting 610 $awind velocities 615 7$aHistory of engineering and technology 700 $aMohammadi-ivatloo$b Behnam$4auth$01306029 702 $aAsadi$b Somayeh$4auth 702 $aAnvari-Moghaddam$b Amjad$4auth 702 $aLarsen$b Kim Guldstrand$4auth 702 $aShahidehpour$b Mohammad$4auth 906 $aBOOK 912 $a9910372783903321 996 $aSustainable Energy Systems Planning, Integration and Management$93028148 997 $aUNINA