wind farm structures impact on harmonic emission and grid interaction harmonics in large offshore...

15
Wind Farm Structures’ Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild (DONG Energy), Claus Leth Bak (Aalborg University)

Upload: junior-torr

Post on 30-Mar-2015

224 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Wind Farm Structures’ Impact on Harmonic Emission and Grid Interaction

Harmonics in LargeOffshore Wind Farms

Łukasz Kocewiak (DONG Energy)Jesper Hjerrild (DONG Energy),Claus Leth Bak (Aalborg University)

Page 2: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Onshore Wind Farms Karnice Wind Farm

Offshore Wind Farms Horns Rev 2 Offshore Wind Farm

Models of Wind Farm Components

Harmonic Impedance Karnice Wind Farm Impedance Plots Horns Rev 2 Impedance Plots Results Comparison

Harmonic Level at Connection Point

Conclusions

Contents

Page 3: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Analysed Wind Farms

Horns Rev 2 and Karnice Wind Farm

Wind farms built and owned by DONG Energy A/S

Two different wind farms: onshore and large offshore

Equipped with the sameSWT-2.3-93 wind turbines

Connected to completely different networks

Wind turbines are equipped with full-scale converters

Page 4: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Onshore Wind Farm- Karnice Wind Farm

Onshore wind situated in the north part of Poland

The wind farm consists 13SWT-2.3-93 wind turbines

Total capacity is 30 MW

Karnice Wind Farm is connecteddirectly to the distributionnetwork

Page 5: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

The biggest offshore windfarm in the world

Situated by the west coastof southern Denmark

The wind farm consists 91SWT-2.3-93 wind turbines

Total capacity is 210 MW

Horns Rev 2 is connected to the network by100 km HVAC submarine and underground cable

Offshore Wind Farm- Horns Rev 2 Offshore Wind Farm

source: Energinet.dk

Page 6: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

High and Medium Voltage Cables

Wind Turbine and Park Transformers

Shunt Reactors

Capacitor Banks

External Network

Models of Wind Farm Components

Page 7: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Models of Wind Farm Components- Medium and High Voltage Cables

0.5 1 1.5 2 2.5 3 3.5 4 4.5 5

x 104

0

10

20

30

40

Mag

nitu

de |Z

| [

]

Power Cable Impedance

ZT

Z

Z eq

0.5 1 1.5 2 2.5 3 3.5 4 4.5 5

x 104

-100

-50

0

50

100A

ngle

Z

[]

Frequency f[Hz]

Lumped Π and T models

Equivalent Π model

Medium voltage cables equivalent impedance calculated based on aggregated model

Approximation of the skineffect using correctionfactors

Frequency of interest:50Hz – 3 kHz

Page 8: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Models of Wind Farm Components- Wind Turbine and Park Transformers

Harmonic models based on measurements and dataprovided by manufacturers

Models based on frequencysweep analyzer measurements

Measurements performed using FRAX FSA within the confines of internal research projects

Frequency of interest:50Hz – 3 kHz

Page 9: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Models of Wind Farm Components- External Network

Frequency characteristic at the point of common coupling

Different short circuit levels, network configurations considered

Frequency of interest: 50Hz – 3 kHz

Page 10: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Harmonic Impedance- Karnice Wind Farm

Page 11: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Harmonic Impedance- Horns Rev 2 Offshore Wind Farm

Page 12: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Results Comparison

Page 13: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Harmonic Level at Connection Point

Large wind farms significantly change impedance at PCC

Voltage THD much lower during wind farm production

11th and 13th voltage harmonics change significantly

Page 14: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Conclusions

Offshore wind farms are mainly connected to the transmission network by long HV cables

Offshore wind farms have much more components which have influence on overall system impedance

Medium voltage cables network is much bigger in offshore wind farms

Large offshore wind farms can operate as a power plant and improve power quality at the point of connection

Every large wind farm has to be analysed separately

Page 15: Wind Farm Structures Impact on Harmonic Emission and Grid Interaction Harmonics in Large Offshore Wind Farms Łukasz Kocewiak (DONG Energy) Jesper Hjerrild

Thank You