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access icon openaccess Analysis of necessary primary reserve of a high wind penetration power system

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References

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      • 2. Murrell, W., Ran, L., Wang, J.: ‘Modelling UK power system frequency response with increasing wind penetration’. 2014 IEEE Innovative Smart Grid Technologies – Asia (ISGT ASIA), Kuala Lumpar, Malaysia, 2014, pp. 16.
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      • 3. Wu, L., Infield, D.: ‘Power system frequency management challenges – a new approach to assessing the potential of wind capacity to aid system frequency stability’, Renew. Power Gener., IET, 2014, 6, (1), pp. 733739.
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      • 4. Ruttledge, L., Miller, N.W., O'Sullivan, J.: ‘Frequency response of power systems with variable speed wind turbines’, IEEE Trans. Sustain. Energy, 2012, 3, (4), pp. 683689.
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      • 5. Vidyanandan, K.V., Senroy, N.: ‘Primary frequency regulation by deloaded wind turbines using variable droop’, IEEE Trans. Power Syst., 2013, 28, (2), pp. 837846.
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      • 6. Wu, L., Infield, D.G.: ‘Towards an assessment of power system frequency support from wind plant – modeling aggregate inertial response’, IEEE Trans. Power Syst., 2013, 28, (3), pp. 22832291.
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      • 7. Hafiz, F., Abdennour, A.: ‘Optimal use of kinetic energy for the inertial support from variable speed wind turbines’, Renew. Energy, 2015, 80, pp. 629643.
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      • 8. Wang, Y., Bayem, H., Giralt-Devant, M., et al: ‘Methods for assessing available wind primary power reserve’, IEEE Trans. Sustain. Energy, 2015, 6, (1), pp. 272280.
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      • 9. Doherty, R., Mullane, A., Burke, D.J., et al: ‘An assessment of the impact of wind generation on system frequency control’, IEEE Trans. Power Syst., 2010, 25, (1), pp. 452459.
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