CNO - 177 20 00179 ER(firmato) TestReport de 2024
CNO - Consejo Nacional de Operación
Descargar PDF
Disponible
Detalles
- Título
- CNO - 177 20 00179 ER(firmato) TestReport de 2024
- Autor
- CNO - Consejo Nacional de Operación
- Categoría
- Infralegal
- Área del derecho
- Servicios Públicos
- Año
- 2024
CREI Ven S.c.a.r.l.
CENTRO RICERCA
ELETTRONICA INDUSTRIALE
VENETO The test results in this Test Report are exclusively referred to the tested samples Without the written authorization of CREI Ven, this document can be reproduced only integrally. I risultati del rapporto di prova si riferiscono esclusivamente ai campioni sotto test Senza l’autorizzazione scritta di CREI Ven, questo docume nto può essere riprodotto solo integralmente. FORM Report – SR/RAP/70 R06 del 28/11/2016 Pag. 1/160 TEST REPORT Report Number 177/20/00179/ER Date of Document 2020-06-08 Total number of pages 167 pag OBJECT Colombia Grid Code – CREG -123 - 2018 Resoluction CREG - 060 - 2019
CUSTOMER Siel S.p.A.
EQUIPMENT UNDER TEST – DESCRIPTION DC/AC three -phase converter for Photovoltaic applications
MODEL SOLEIL DSPX 1415 TLH 1500
SUMMARY 1 IDENTIFICATION 2 1.1 Laboratory 2 1.2 Customer 2 2 EQUIPMENT UNDER TEST (EUT) 2 2.1 EUT identification 2 2.1.1 Electrical specification 2 2.1.2 Location and date of testing 3 2.1.3 Sampling and adopted criteria 3 2.2 EUT Auxiliary Equipments (AEs) 3 2.3 Test bench configuration 3 2.4 EUT Modifications 3 3 OBJECT OF THE TESTS 3 5 CONCLUSION 3 5 TEST RESULTS 4 Annex B Test Instrumentations 1 pag Annex C Photographs of test configurations 2 pag Annex D Auxiliary Instrumentations 2 pag Annex F Judgment of compliance and measurements uncertainty 2 pag Tested by 5 CONCLUSION 3 5 TEST RESULTS 4 Annex B Test Instrumentations 1 pag Annex C Photographs of test configurations 2 pag Annex D Auxiliary Instrumentations 2 pag Annex F Judgment of compliance and measurements uncertainty 2 pag Tested by (Name + Signature) SEBASTIANO GRESPAN Test engineer Verified by (Name + Signature)
MAURO MAJOLO
Lab Manager Approved and issued by (Name + Signature)
ALESSANDRO ZUCCATO
Lab DirectorCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 2/160
1 IDENTIFICATION
1.1 Laboratory
Name : CREI Ven S.c.a.r.l.
CENTRO RICERCA ELETTRONICA INDUSTRIALE VENETO Street: [HEAD OFFICE] Corso Spagna, 12 / [TEST SITE] Corso Stati Uniti, 4
City : 35127 Padova - ITALY Phone : +39.049.8704036
Fax: +39.049.8707037
E-mail : info@creiven.it
1.2 Customer
Customer: Siel S.p.A.
Street: Via 1° Maggio 25
City: 20060 Trezzano Rosa, Milan, Italy
Phone: +39-02-909861
Refer to : Mr.Paride Carta
2 EQUIPMENT UNDER TEST (EUT) 2.1 EUT identification
EUT Description: DC/AC three-phase converter for Photovoltaic applications
Model: SOLEIL DSPX 1415M TLH 1500
Code: U170225
2 EQUIPMENT UNDER TEST (EUT) 2.1 EUT identification
EUT Description: DC/AC three-phase converter for Photovoltaic applications
Model: SOLEIL DSPX 1415M TLH 1500
Code: U170225
Software release: MC0190.00.xx
(xx value = “11” or following revision Size: 2000 x 1000 x 2000 mm (LxWxH)
Manufacturer: Siel S.p.A.
Supplier: Siel S.p.A. 2.1.1 Electrical specification
Output side A.C.
Rated voltage: 640 Vac (3 Ph, PE) Voltage range: 85 ÷ 115 % Rated frequency: 50 / 60 Hz Frequency range: 47.5 ÷ 51.5 Hz / 57.5 ÷ 61.5 Hz Rated Output Power: 1416 kW () Maximum output current: 1278 A cosφ range: 0 1 (ind – cap)
() EUT is composed by two equal DC/AC converters: for laboratory test only one has been used, considering the Rated Output Power of 708 kW. Input side A.C. for auxiliary circuit: Voltage range: 400 Vac 3Ph+N Frequency range: 50 Hz ± 10 % Rated input current 4.5 A Input side D.C Mpp voltage range 950 ÷ 1400 Vd.c. Start input voltage 950 Vd.c.
Maximum input voltage: 1500 Vd.c.
Rated power: 1435 kW Maximum input current: 1511 A Climatic condition Minimum ambient temperature for operation: -20°C Maximum ambient temperature for operation: 60°C Relative humidity: 5 ÷ 95 % without condensing Maximum altitude for operation (without derating) 1000 mCREI Ven – Padova Climatic condition Minimum ambient temperature for operation: -20°C Maximum ambient temperature for operation: 60°C Relative humidity: 5 ÷ 95 % without condensing Maximum altitude for operation (without derating) 1000 mCREI Ven – Padova
Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 3/160 2.1.2 Location and date of testing Date of receipt of test item 2020-05-25 Date (s) of performance of tests: See the data specified in test results details 2.1.3 Sampling and adopted criteria Equipment used for testing was selected by the customer. Sampling criteria adopted by the customer is unknown to CREI Ven laboratory. 2.2 EUT Auxiliary Equipments (AEs) None. 2.3 Test bench configuration The test bench was composed by the following components:
Auxiliary equipment AE N° 1
Description: AC/DC three-phase Rectifier
Model: SOLEIL DSPX 1415 TLH 1500
Manufacturer: Siel S.p.a.
Auxiliary equipment AE N° 2
Description: Transformer 750kVa 1500Vdc
Model: COT0381AE (Siel Code)
Manufacturer: Siel S.p.a.
2.4 EUT Modifications None. 3 OBJECT OF THE TESTS All the tests herein summarized, have been performed with the inverter equipped with the FW Rev. MC0190.00.11. This FW revision was used after being positively tested in SIEL LAB, and it was aimed at improving and smoothing the behavior of the inverter during LVRT events (i.e. no overcurrent protection intervention during LVRT) This FW revision was used after being positively tested in SIEL LAB, and it was aimed at improving and smoothing the behavior of the inverter during LVRT events (i.e. no overcurrent protection intervention during LVRT) The objective of the tests is: • Compliance evaluation of the “SOLEIL DSPX 1415M TLH 1500” inverter to the voltage regulation requirements of “Resolucion CREG-060-2019” In particular, the evaluation concerns: - Clause 14.c and 14.d Voltage Control (LVRT-HVRT) The evaluation has been done using different K-factor (Reactive current feed-in depending on the magnitude of the voltage dip) set between 1 2 and 10. • Verify the Active Power generation during LVRT • Verify that as a consequence of many different LVRT tests, no overcurrent protection trip is triggered by the inverter (i.e. the peak current of the inverter during LVRT never reaches the protection threshold value of 1278A). The results contained in this test report are related only to the “SOLEIL DSPX 1415M TLH 1500” inverter (EUT). In general, the reference standard is applied to the whole plant, of which the electronic converter is a component. 4 5 CONCLUSION 6 • All the LVRT tests have been passed with no overcurrent protection intervention by the inverter. The maximum current peak recorded was about 1020A • All the LVRT tests have been passed in accordance to CREG-060-2019CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 4/160 5 TEST RESULTS Art. 13 Verification of insensivity to voltage variations (VFRT) Number of test Type Un (640 V) Pn (708 kW) K Phase 5 TEST RESULTS Art. 13 Verification of insensivity to voltage variations (VFRT) Number of test Type Un (640 V) Pn (708 kW) K Phase 1 LVRT 10% 30% 1 Sym 2 LVRT 10% 30% 2 Sym 3 LVRT 10% 30% 10 Sym 4 LVRT 25% 30% 1 Sym 5 LVRT 25% 30% 2 Sym 6 LVRT 25% 30% 10 Sym 7 LVRT 50% 30% 1 Sym 8 LVRT 50% 30% 2 Sym 9 LVRT 50% 30% 10 Sym 10 LVRT 75% 30% 1 Sym 11 LVRT 75% 30% 2 Sym 12 LVRT 75% 30% 10 Sym 13 LVRT 10% 91% 1 Sym 14 LVRT 10% 91% 2 Sym 15 LVRT 25% 91% 1 Sym 16 LVRT 25% 91% 2 Sym 17 LVRT 50% 91% 1 Sym 18 LVRT 50% 91% 2 Sym 19 LVRT 50% 91% 10 Sym 20 LVRT 75% 91% 1 Sym 21 LVRT 75% 91% 2 Sym 22 LVRT 75% 91% 10 Sym 23 LVRT 10% 30% 1 Asym 24 LVRT 25% 30% 1 Asym 25 LVRT 25% 30% 2 Asym 26 LVRT 50% 30% 1 Asym 27 LVRT 50% 30% 2 Asym 28 LVRT 75% 30% 1 Asym 29 LVRT 75% 30% 2 Asym 30 LVRT 75% 30% 10 Asym 31 LVRT 10% 91% 1 Asym 27 LVRT 50% 30% 2 Asym 28 LVRT 75% 30% 1 Asym 29 LVRT 75% 30% 2 Asym 30 LVRT 75% 30% 10 Asym 31 LVRT 10% 91% 1 Asym 32 LVRT 10% 91% 2 Asym 33 LVRT 25% 91% 1 Asym 34 LVRT 25% 91% 2 Asym 35 LVRT 50% 91% 1 Asym 36 LVRT 50% 91% 2 Asym 37 LVRT 75% 91% 1 Asym 38 LVRT 75% 91% 2 Asym 39 LVRT 75% 91% 10 Asym For HVRT (overvoltage test) se report N° 192_19_191306LPCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 5/160 Test N° 1 LVRT - 10% Un - 30% Pn – Sym – K = 1 Duration (ms): 500 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Normal condition 1 1 1 0° 240° 120° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 6/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 7/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 8/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 9/160 Test N° 2 LVRT - 10% Un - 30% Pn – Sym – K = 2 Duration (ms): 500 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal Test N° 2 LVRT - 10% Un - 30% Pn – Sym – K = 2 Duration (ms): 500 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 10/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 11/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 12/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 12/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 13/160 Test N° 3 LVRT - 10% Un - 30% Pn – Sym – K = 10 Duration (ms): 500 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 14/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 14/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 15/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 16/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 17/160 Test N° 4 LVRT - 25% Un - 30% Pn – Sym – K = 1 Duration (ms): 700 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 18/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 19/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 20/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 21/160 Test N° 5 LVRT - 25% Un - 30% Pn – Sym – K = 2 Duration (ms): 700 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 30° 270° 150° LV Normal MV Normal condition 1 1 1 30° 270° 150° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 22/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 23/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 24/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 25/160 Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 25/160 Test N° 6 LVRT - 25% Un - 30% Pn – Sym – K = 10 Duration (ms): 700 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 26/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 27/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 27/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 28/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 29/160 Test N° 7 LVRT - 50% Un - 30% Pn – Sym – K = 1 Duration (ms): 1030 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 30/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 31/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 32/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 33/160 Test N° 8 LVRT - 50% Un - 30% Pn – Sym – K = 2 Duration (ms): 1030 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 34/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 35/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 36/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 37/160 Test N° 9 LVRT - 50% Un - 30% Pn – Sym – K = 10 FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 37/160 Test N° 9 LVRT - 50% Un - 30% Pn – Sym – K = 10 Duration (ms): 1030 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 38/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 39/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 39/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 40/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 41/160 Test N° 10 LVRT - 75% Un - 30% Pn – Sym – K = 1 Duration (ms): 1300 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,75 ±0,05 0,75 ±0,05 0,75 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,75 ±0,05 0,75 ±0,05 0,75 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 42/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 43/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 44/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 45/160 Test N° 11 LVRT - 75% Un - 30% Pn – Sym – K = 2 Duration (ms): 1300 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,75 ±0,05 0,75 ±0,05 0,75 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,75 ±0,05 0,75 ±0,05 0,75 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,75 ±0,05 0,75 ±0,05 0,75 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 46/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 47/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 48/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 49/160 Test N° 12 LVRT - 75% Un - 30% Pn – Sym – K = 10 FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 49/160 Test N° 12 LVRT - 75% Un - 30% Pn – Sym – K = 10 Duration (ms): 1300 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,75 ±0,05 0,75 ±0,05 0,75 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,75 ±0,05 0,75 ±0,05 0,75 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 50/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 51/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 51/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 52/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 53/160 Test N° 13 LVRT - 10% Un - 91% Pn – Sym – K = 1 Duration (ms): 500 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 54/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 55/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 56/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 57/160 Test N° 14 LVRT - 10% Un - 91% Pn – Sym – K = 2 Duration (ms): 500 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,10 ±0,05 0,10 ±0,05 0,10 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 58/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 59/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 60/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 61/160 Test N° 15 LVRT - 25% Un - 91% Pn – Sym – K = 1 FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 61/160 Test N° 15 LVRT - 25% Un - 91% Pn – Sym – K = 1 Duration (ms): 700 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 62/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 63/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 63/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 64/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 65/160 Test N° 16 LVRT - 25% Un - 91% Pn – Sym – K = 2 Duration (ms): 700 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,25 ±0,05 0,25 ±0,05 0,25 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 66/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 67/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 68/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 69/160 Test N° 17 LVRT - 50% Un - 91% Pn – Sym – K = 1 Duration (ms): 1030 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 70/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 71/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 72/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 73/160 Test N° 18 LVRT - 50% Un - 91% Pn – Sym – K = 2 FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 73/160 Test N° 18 LVRT - 50% Un - 91% Pn – Sym – K = 2 Duration (ms): 1030 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 74/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 75/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 75/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 76/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 77/160 Test N° 19 LVRT - 50% Un - 91% Pn – Sym – K = 10 Duration (ms): 1030 ±20 V1/V1,nom V2/V2,nom V3/V3,nom φV1 φV2 φV3 MV Normal condition 1 1 1 30° 270° 150° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 30° 270° 150° LV Normal condition 1 1 1 0° 240° 120° During fault 0,50 ±0,05 0,50 ±0,05 0,50 ±0,05 0° 240° 120° Phasor diagram in normal condition MV side Phasor diagram in normal condition LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER LV side Phasor diagram during fault MV side Phasor diagram during fault LV sideCREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 78/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 79/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 80/160CREI Ven – Padova Laboratorio Prove Report n. 177/20/00179/ER FORM Report CEI 0-16 – SR/RAP/70 R06 del 28/11/2016 Pag. 81/160 Test N° 20 LVRT - 75% Un - 91% Pn –
Estás viendo una vista previa
Lee el documento completo con Ariel
Este es un fragmento de uno de los más de 1.2 millones de documentos de la biblioteca de Ariel. Crea tu cuenta para leerlo completo, descargarlo y consultarlo con Ariel, que siempre te lleva a la fuente exacta: Ariel NO alucina.