SciELO - Scientific Electronic Library Online

 
vol.23 número2Comparison between two different solution-pumping methods in absorption refrigeration machines índice de autoresíndice de materiabúsqueda de artículos
Home Pagelista alfabética de revistas  

Servicios Personalizados

Articulo

Indicadores

Links relacionados

  • En proceso de indezaciónCitado por Google
  • En proceso de indezaciónSimilares en Google

Compartir


Journal of Energy in Southern Africa

versión On-line ISSN 2413-3051
versión impresa ISSN 1021-447X

J. energy South. Afr. vol.23 no.2 Cape Town  2012

 

Rural electrification using overhead HVDC transmission lines

 

 

Leon Chetty; Nelson Ijumba

HVDC Centre, University of KwaZulu-Natal, South Africa

 

 


ABSTRACT

One of mankind's greatest modern challenges is poverty alleviation. The provision of electricity can greatly assist in this regard. The tapping of small amounts of power from an HVDC transmission line represents a solution to this problem especially in rural areas. This paper analyses the dynamic characteristics of a parallel-cascaded tapping station. The results obtained clearly indicate that the parallel-cascaded tapping station proves to be a viable solution to tapping small amounts of power from an HVDC transmission line.

Keywords: rural electrification, HVDC transmission lines, voltage source inverter


 

 

Full text available only in PDF format.

 

 

References

Aghaebrahimi, M.R, & Menzies, R.W (1997). Small power tapping from HVDC transmission systems: A novel approach. IEEE Trans. on Power Delivery 12(4):1698-1703.         [ Links ]

Aghaebrahimi, M.R, & Menzies, R.W (1998). A customized air-core transformer for a small power tapping station. IEEE Trans. on Power Delivery 13(14):1265-1270.         [ Links ]

Aredes, M, et. al. (2001). HVDC tapping using softswitching techniques. Electrical Engineering Research Journal - Archiv fur Electrotechnik 83(V2):33-40.         [ Links ]

Aredes, M., et. al. (2002). A 500 kV Soft-Switching HVDC Tap. CIGRE 14-115.         [ Links ]

Bahrman, M, et. al. (1995). Integration of small power taps into (existing) HVDC links. IEEE Trans. On Power Delivery 10(3):1699-1706.         [ Links ]

Chetty, L., Ijumba N.M. & Britten A.C. (2004). Parallel-Cascaded tapping station. Proc. of IEEE Int. Conf. Power System Technology. 1674-1878.         [ Links ]

Ekstrom, A, & Lamell, P (1991). HVDC tapping station: Power tapping from a DC transmission line to a local AC network. Proc. of IEE 5th International Conf. on AC and DC Power Transmission September: 126-131.         [ Links ]

Jovcic, D. (2009). Bidirectional High Power DC Transformer. IEEE Trans. on Power Delivery 24(4):2276-2283.         [ Links ]

Khatib, H. (1998). Electrical power in developing countries. IEE Power Engineering Journal: 239-247.         [ Links ]

Lamm, U, et. al., (1963). Some aspects of tapping HVDC systems. Direct Current 8(5).         [ Links ]

Lima, A.G.G, et al., (1991). HVMDC: A new concept to feed small loads. Proc. of IEE 5th International Conf. on AC and DC Power Transmission September: 120-125.         [ Links ]

Szechtman, M. et al., 1991. First Benchmark Model for HVDC Control Studies. Electra 135.         [ Links ]

Turanli, H.M, et. al. (1989). A forced commutated inverter as a small series tap on a DC line. IEEE Trans. on Power Electronics 4(2):187-193.         [ Links ]

Zhao, Z, & Irvani, M.R. (1994). Application of GTO voltage source inverter for tapping HVDC power Proc. of IEE Conf. - Gen, Trans, Distri.141(1):19-26.         [ Links ]

Rahman, H., & Khan, B.H. (2008). Possibility of Power Tapping from Composite AC-DC Power Transmission Lines. IEEE Trans. on Power Delivery 23(3):1464-1471.         [ Links ]

 

 

Received 27 September 2010
Revised 19 September 2011

Creative Commons License Todo el contenido de esta revista, excepto dónde está identificado, está bajo una Licencia Creative Commons