← Indietro
EsameEsame completoSoluzione

AY 2020 21 Test 5 Numerical part with solutions

Esame completo di Electric Conversion From Green Sources of Energy per il corso di Energy Engineering presso Politecnico di Milano. Materiale proveniente dall’archivio storico Studwiz e classificato per la consultazione online.

Electric Conversion From Green Sources of EnergyEsame completo

Informazioni sul documento

Cosa trovi in questo materiale

Esame completo di Electric Conversion From Green Sources of Energy per il corso di Energy Engineering presso Politecnico di Milano. Materiale proveniente dall’archivio storico Studwiz e classificato per la consultazione online.

Qualità dell’importazione: il testo è stato estratto direttamente dal documento originale.

Contenuti estratti dal documento

Passaggi rappresentativi riconosciuti nelle diverse parti del materiale. Il testo completo resta presente nella pagina per la ricerca, mentre l’anteprima compatta rende più semplice la lettura.

Pagina 1

ELECTRIC CONVERSION FROM GREEN SOURCES OF ENERGY Prof. Alberto Dolara Numerical exercise 1 < 18 February 2022 > Consider a wind turbine in the full converter configuration with a Permanent Magnet Synchronous Generator (PMSG) in the figure below. The power processor is composed by the cascade connection of a AC/DC three-phase thyristor controlled rectifier and a three-phase full-bridge PWM inverter , sharing a common DC-link. The output terminals of the wind turbine are connected to the Medium Voltage (MV) grid by means of three-phase transformer . The turbine shaft is mechanically connected to the PMSG with a gearbox that multiplies the turbine speed (Ωt). The main ratings of this power conversion system are: ► PMSG number of poles, p 48 poles ► PMSG speed/voltage ratio, kV 1.15 V/rpm ( Eline-to-neutral,RMS = kV ∙ Ωm) ► PMSG synchronous reactance, Xs 0.1 Ω @50 Hz ► Wind turbine gearbox ratio, τG 64 ► Transformer: rated low voltage, VLV,n 330 V ► Transformer: rated high voltage, VHV,n 15 kV ► Transformer: rated frequency, fn 50 Hz Calculate: 1. The minimum turbine speed ( Ωt) that allows the inverter to operate in linear region. Assume ideal converters. Now assume the following operating conditions: ► DC-link voltage, VDC 650 V ► MV grid voltage, VMV 15.3 kV ► Turbine speed, Ωt 4.6 rpm ► Inverter input power, Pinv 240 kW Calculate: 2. The PMSG output frequency, fPMSG . 3. The firing angle, α, of the thyristor controlled rectifier. Take into a ccount the voltage drop due to source inductance. 4. The inverter amplitude modulation ratio, ma. 2 Solution 1. Minimum turbine speed (Ω t) that allows the inverter to operate in linear region. Assume ideal converters. The minimum DC-link voltage that allows the inverter to operate in the linear region is: , , 2 2 538.89V 3 DC min…

Anteprima

Prima pagina del documento.

Prima pagina: AY 2020 21 Test 5 Numerical part with solutions