connection of large offshore wind farms. In 2012
IEEE International Conference on Power System
Technology (POWERCON) (pp. 1–6). http://doi.org/
10.1109/PowerCon.2012.6401377.
Hofmann, L. (2015, May). Einsatz von Erdkabeln und
Freileitungen in Hochspannungs-Drehstrom- und -
Gleichstrom-Übertragungssystemen (Power cables
and overhead power lines for AC and DC
transmission). Presented at the Informationstag
BNetzA (Information Day Federal Network Agency),
Hannover, Germany.
Huijts, N. M. A., Molin, E. J. E., & Steg, L. (2012).
Psychological factors influencing sustainable energy
technology acceptance: A review-based
comprehensive framework. Renewable and
Sustainable Energy Reviews, 16(1), 525–531.
Jay, S. (2007). Pylons in the Back Yard: Local Planning
and Perceived Risks to Health. Environment and
Planning C: Government and Policy, 25(3), 423–438.
http://doi.org/10.1068/c58m.
Jewell, W., Grossardt, T., Bailey, K., & Gill, R. S. (2009).
A New Method for Public Involvement in Electric
Transmission-Line Routing. IEEE Transactions on
Power Delivery, 24(4), 2240–2247. http://doi.org/
10.1109/TPWRD.2009.2027490.
Karrer, K., Glaser, C., Clemens, C., & Bruder, C. (2009).
Technikaffinität erfassen–der Fragebogen TA-EG. Der
Mensch Im Mittelpunkt Technischer Systeme, 8, 196–
201.
Kowalewski, S., Borg, A., Kluge, J., Himmel, S.,
Trevisan, B., Eraßme, D., … Jakobs, E.-M. (2014).
Modeling the Influence of Human Factors on the
Perception of Renewable Energies. Taking
Geothermics as Example. In Proceedings of the 5th
International Conf. on Applied Human Factors and
Ergonomics AHFE 2014 (pp. 1884–1891). Kraków,
Poland: T. Ahram, W. Karwowski and T. Marek.
Lienert, P., Suetterlin, B., & Siegrist, M. (2015). Public
acceptance of the expansion and modification of high-
voltage power lines in the context of the energy
transition. Energy Policy, 87, 573–583.
http://doi.org/10.1016/j.enpol.2015.09.023.
Lundberg, S. (2006). Wind Farm Configuration and
Energy Efficiency Studies - Series DC versus AC
Layouts (Doctoral thesis). Chalmers University of
Technology. Retrieved from http://publications.
lib.chalmers.se/ publication/24835-wind-farm-configu
ration-and-energy-efficiency-studies-series-dc- versus-
ac-layouts.
MacGregor, D. G., Slovic, P., & Morgan, M. G. (1994).
Perception of risks from electromagnetic fields: a
psychometric evaluation of a risk-communication
approach. Risk Analysis, 14(5), 815–828.
McNair, B. J., Bennett, J., Hensher, D. A., & Rose, J. M.
(2011). Households’ willingness to pay for overhead-
to-underground conversion of electricity distribution
networks.
Energy Policy, 39(5), 2560–2567.
http://doi.org/10.1016/j.enpol.2011.02.023.
Meah, K., & Ula, S. (2007). Comparative Evaluation of
HVDC and HVAC Transmission Systems. In IEEE
Power Engineering Society General Meeting, 2007
(pp. 1–5). http://doi.org/10.1109/PES.2007.385993.
Menges, R., & Beyer, G. (2014). Underground cables
versus overhead lines: Do cables increase social
acceptance of grid development? Results of a
Contingent Valuation survey in Germany.
International Journal of Sustainable Energy Planning
and Management, 3(0), 33–48.
Navrud, S., Ready, R. C., Magnussen, K., & Bergland, O.
(2008). Valuing the social benefits of avoiding
landscape degradation from overhead power
transmission lines: Do underground cables pass the
benefit–cost test? Landscape Research, 33(3), 281–
296. http://doi.org/10.1080/01426390802045921.
Owens, S. (2000). “Engaging the public”: information and
deliberation in environmental policy. Environment and
Planning A, 32(7), 1141–1148. http://doi.org/
10.1068/a3330.
Priestley, T., & Evans, G. W. (1996). Resident perceptions
of a nearby electric transmission line. Journal of
Environmental Psychology, 16(1), 65–74.
http://doi.org/10.1006/jevp.1996.0006.
Soini, K., Pouta, E., Salmiovirta, M., Uusitalo, M., &
Kivinen, T. (2011). Local residents’ perceptions of
energy landscape: the case of transmission lines. Land
Use Policy, 28(1), 294–305. http://doi.org/
10.1016/j.landusepol.2010.06.009.
Song-Manguelle, J., Maja Harfman, T., Chi, S., Gunturi,
S. K., & Datta, R. (2013). Power transfer capability of
HVAC cables for subsea transmission and distribution
systems. In 2013 Record of Conference Papers
Industry Applications Society 60th Annual IEEE
Petroleum and Chemical Industry Technical
Conference (PCIC) (pp. 1–9). http://doi.org/
10.1109/PCICon.2013.6666031.
Van Hertem, D., & Ghandhari, M. (2010). Multi-terminal
VSC HVDC for the European supergrid: Obstacles.
Renewable and Sustainable Energy Reviews, 14(9),
3156–3163. http://doi.org/10.1016/j.rser.2010.07.068.
Venkatesh, V., & Bala, H. (2008). Technology
Acceptance Model 3 and a Research Agenda on
Interventions. Decision Sciences, 39(2), 273–315.
http://doi.org/10.1111/j.1540-5915.2008.00192.x.
Venkatesh, V., Morris, M. G., Davis, G. B., & Davis, F.
D. (2003). User acceptance of information technology:
Toward a unified view. MIS Quarterly, 27, 425–478.
Wüstenhagen, R., Wolsink, M., & Bürer, M. J. (2007).
Social acceptance of renewable energy innovation: An
introduction to the concept. Energy Policy, 35(5),
2683–2691.
Zaunbrecher, B. S., Arning, K., Özalay, B., Natemeyer,
H., & Ziefle, M. (2015). Pitfalls when Placing
Electricity Pylons - The Influence of Age on
Acceptance. In J. Zhou & G. Salvendy (Eds.), Human
Aspects of IT for the Aged Population. Design for
Aging (pp. 282–293). Springer International
Publishing. Retrieved from http://link.springer.com/
chapter/10.1007/978-3-319-20892-3_28.