01146nam2-2200385---450-99000336668020331620100202120340.0978-1-58829-989-5000336668USA01000336668(ALEPH)000336668USA0100033666820100201d2009----km-y0itay50------baengNL||||||||001yyLeukemiamethods and protocolsedited by Chi Wai Eric SoNew York [etc.]Humana Press2009XI, 428 p.ill.27 cmMethods in molecular biology5380010003365822001Methods in molecular biology, 5382001LeucemiaBNCF616.99419SO,Chi Wai EricITsalbcISBD990003366680203316616.994 LEU5267 Farm.616.99400255414BKFARALESSANDRA9020100201USA011345ALESSANDRA9020100201USA011345ALESSANDRA9020100202USA011203Leukemia791142UNISA01668nam0 22003493i 450 SBL055730520251003044356.0IT753114 20190307d1974 ||||0itac50 baitaitz01i xxxe z01nz01ncRDAcarrierˆLa ‰revoca non formale del testamento e la teoria del comportamento concludenteVincenzo ScalisiMilanoA. Giuffrè1974XII, 572 p.25 cm.Pubblicazioni dell'Istituto di scienze giuridiche, economiche, politiche e sociali della Università di Messina96001RAV02147512001 Pubblicazioni dell'Istituto di scienze giuridiche, economiche, politiche e sociali della Università di Messina96TestamentoRevocaFIRSBLC131101I346DIRITTO PRIVATO21346.054TESTAMENTI.21346.45054SUCCESSIONI TESTAMENTARIE. ITALIA21Scalisi, Vincenzo <1940- >TO0V048751070235899ITIT-00000020190307IT-BN0095 NAP 01D $SBL0557305Biblioteca Centralizzata di Ateneo 01D (AR) 5 917 01AR 0070059175 VMA 1 v.Y 2023091820230918FONDO CHIOMENTIEx Libris1 v. 01D (AR) 8 041 01AR 0070080415 VMA 1 v.Y 2015072120150721 01Revoca non formale del testamento e la teoria del comportamento concludente67599UNISANNIO03580nam 2200913z- 450 9910367745003321202102113-03921-763-1(CKB)4100000010106267(oapen)https://directory.doabooks.org/handle/20.500.12854/49696(oapen)doab49696(oapen)49696(EXLCZ)99410000001010626720202102d2019 |y 0engurmn|---annantxtrdacontentcrdamediacrrdacarrierHVDC for Grid Services in Electric Power SystemsMDPI - Multidisciplinary Digital Publishing Institute20191 online resource (176 p.)3-03921-762-3 The modern electric power system has evolved into a huge nonlinear complex system due to the interconnection of thousands of generation and transmission systems. The unparalleled growth of renewable energy resources (RESs) has caused significant concern regarding grid stability and power quality, and it is essential to find ways to control such a massive system for effective operation. The controllability of HVDC and FACTS devices allows for improvement of the dynamic behavior of grids and their flexibility. Research is being carried out at both the system and component levels of modelling, control, and stability. This Special Issue aims to present novel HVDC topologies and operation strategies to prevent abnormal grid conditions.History of engineering and technologybicssc3-phase AC/DC PWM converterAC/DC converteractive power control strategiesangle spreadangle stabilityback-to-back HVDCBTB-HVDCcommutation failure probabilityDC distributionDC distribution systemDC-side oscillationembedded HVDCfault current limiter (FCL)frequency droop controlfull bridge (FB)grid service of HVDCgrid-interconnectiongrounding systemGVIF indexhalf bridge (HB)high voltage direct current (HVDC)HVDC operation pointhybrid HVDC breaker (HCB)impedance-based Nyquist stability criterioninsulation monitoring device (IMD)LCC HVDCline commutated converterloss minimizationmodular multilevel converter (MMC)multi-infeed HVDC systemn/aphase detectionPowell's direct set methodpower controlprotectionquantitative evaluationreclosing current limiting resistance (RCLR)reclosing processshort-circuit current calculationSOGI-FLLspecial protection systemsynchronous condenser (SC)system loss minimizationtransient stabilityvirtual impedanceVSC HVDCVSC-HVDCVSC-HVDCHistory of engineering and technologyJang Gilsooauth1324887BOOK9910367745003321HVDC for Grid Services in Electric Power Systems3036442UNINA