[1] Best practices on renewable energy self-consumption. COMMISSION STAFF WORKING DOCUMENT COM(2015) 339 final, European Commission, Brussels; July 2015.
[2] De Boeck, L., Van Asch, S., De Bruecker, P., Audenaert, A., Comparison of support policies for residential photovoltaic systems in the major EU markets through investment profitability. Renew Energy 87 (2016), 42–53, 10.1016/j.renene.2015.09.063.
[3] Dehler J. Self-consumption of electricity from renewable sources. INSIGHT_e, Karlsruhe Institute of Technology; June 2015.
[4] Luthander, R., Widn, J., Nilsson, D., Palm, J., Photovoltaic self-consumption in buildings: a review. Appl Energy 142 (2015), 80–94, 10.1016/j.apenergy.2014.12.028.
[5] Hoppmann, J., Volland, J., Schmidt, T.S., Hoffmann, V.H., The economic viability of battery storage for residential solar photovoltaic systems a review and a simulation model. Renew Sustain Energy Rev 39 (2014), 1101–1118, 10.1016/j.rser.2014.07.068.
[6] Goldie-Scot L. Cost reductions and residential energy storage drivers. Tech rep, Bloomberg; January 2016.
[7] Weniger, J., Tjaden, T., Quaschning, V., Sizing of residential PV battery systems. Energy Proc 46 (2014), 78–87, 10.1016/j.egypro.2014.01.160 [00023].
[8] Truong, C.N., Naumann, M., Karl, R.C., Mller, M., Jossen, A., Hesse, H.C., Economics of residential photovoltaic battery systems in Germany: the case of Teslas powerwall. Batteries, 2(2), 2016, 14, 10.3390/batteries2020014.
[9] Merei, G., Moshvel, J., Magnor, D., Sauer, D.U., Optimization of self-consumption and techno-economic analysis of PV-battery systems in commercial applications. Appl Energy 168 (2016), 171–178, 10.1016/j.apenergy.2016.01.083.
[10] Moshvel, J., Kairies, K.-P., Magnor, D., Leuthold, M., Bost, M., Ghrs, S., et al. Analysis of the maximal possible grid relief from PV-peak-power impacts by using storage systems for increased self-consumption. Appl Energy 137 (2015), 567–575, 10.1016/j.apenergy.2014.07.021.
[11] Riesen, Y., Ding, P., Monnier, S., Wyrsch, N., Ballif, C., Peak shaving capability of household grid-connected PV-system with local storage: a case study. proceedings of the 28th European photovoltaic solar energy conference and exhibition, EPFL, Institute of Microengineering (IMT), photovoltaics and thin film electronics Laboratory Neuchate, Ed., Paris, France, 2013.
[12] Velik, R., The influence of battery storage size on photovoltaics energy self-consumption for grid-connected residential buildings. IJARER Int J Adv Renew Energy Res, 2(6), 2013.
[13] Thygesen, R., Karlsson, B., Simulation of a proposed novel weather forecast control for ground source heat pumps as a mean to evaluate the feasibility of forecast controls influence on the photovoltaic electricity self-consumption. Appl Energy 164 (2016), 579–589, 10.1016/j.apenergy.2015.12.013.
[14] Castillo-Cagigal, M., Caama-Martn, E., Matallanas, E., Masa-Bote, D., Gutirrez, A., Monasterio-Huelin, F., et al. PV self-consumption with storage and active DSM. Sol Energy, 85, 2011, 11.
[15] Colmenar-Santos, A., Campez-Romero, S., Prez-Molina, C., Castro-Gil, M., Profitability analysis of grid-connected photovoltaic facilities for household electricity self-sufficiency. Energy Policy 51 (2012), 749–764, 10.1016/j.enpol.2012.09.023.
[16] Kastel, P., Gilroy-Scott, B., Economics of pooling small local electricity prosumersLCOE & self-consumption. Renew Sustain Energy Rev 51 (2015), 718–729, 10.1016/j.rser.2015.06.057.
[17] Widn, J., Wckelgrd, E., Paatero, J., Lund, P., Impacts of distributed photovoltaics on network voltages: stochastic simulations of three Swedish low-voltage distribution grids. Electric Power Syst Res 80:12 (2010), 1562–1571, 10.1016/j.epsr.2010.07.007.
[18] Richardson, I., Thomson, M., Infield, D., Clifford, C., Domestic electricity use: a high-resolution energy demand model. Energy Build 42:10 (2010), 1878–1887, 10.1016/j.enbuild.2010.05.023.
[19] Ardakanian, O., Keshav, S., Rosenberg, C., Markovian models for home electricity consumption. Proceedings of the 2nd ACM SIGCOMM workshop on Green networking, 2011, ACM, 31–36.
[20] Labeeuw, W., Deconinck, G., Residential electrical load model based on mixture model clustering and Markov models. IEEE Trans Ind Inform 9:3 (2013), 1561–1569.
[21] Hebrail G. UCI machine learning repository: individual household electric power consumption data set. Tech rep, University of California, Irvine, School of Information and Computer Sciences, 00002; 2012. .
[22] Richardson I, Thomson M. One-minute resolution domestic electricity use data, 2008–2009. Tech rep 2016; 2009. .
[23] Lucas Pereira, F., Quintal, R., Nuno, J.N., SustData: a public dataset for ICT4s electric energy research. Proceedings of the second international conference on ICT for sustainability, Stockholm, Sweden, 2014.
[24] Dupret J. Residential monitoring to decrease energy use and carbon emissions. Tech rep, University of Coimbra, Portugal; 2008. .
[25] Nichols, J.M., Olson, C.C., Michalowicz, J.V., Bucholtz, F., A simple algorithm for generating spectrally colored, non-Gaussian signals. Probab Eng Mech 25:3 (2010), 315–322, 10.1016/j.probengmech.2010.01.005.
[26] Schreiber, T., Schmitz, A., Improved surrogate data for nonlinearity tests. Phys Rev Lett, 77, 1996, 635, 10.1103/PhysRevLett.77.635.
[27] Kugiumtzis, D., Bora-Senta, E., Simulation of multivariate non-gaussian autoregressive time series with given autocovariance and marginals. Simul Model Pract Theory 44 (2014), 42–53, 10.1016/j.simpat.2014.03.001.
[28] U.D. of energy, weather data: typical meteorological years. .
[29] Huld, T., Suri, M., Cebecauer, T., Dunlop, E., Optimal mounting strategy for single-axis tracking nonconcentrating PV in Europe. Proceedings 23rd EUPVSEC, Valencia, Spain, Valencia, 2008.
[30] Amillo, A.G., Huld, T., Mller, R., A new database of global and direct solar radiation using the Eastern Meteosat Satellite, models and validation. Remote Sens 6:9 (2014), 8165–8189, 10.3390/rs6098165.
[31] Munkhammar, J., Grahn, P., Widn, J., Quantifying self-consumption of on-site photovoltaic power generation in households with electric vehicle home charging. Sol Energy 97 (2013), 208–216, 10.1016/j.solener.2013.08.015.