[2] European Commission. Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions. 20 20 by 2020: Europe’s climate change opportunity COM 2008:1–12.
[3] European Commission. Roadmap to a Single European Transport Area–Towards a competitive and resource efficient transport system, 2011. doi:10.2832/3095510.2832/30955
[4] European Union. Directive 2014/94/EU of the European Parliament and of the Council of 22 October 2014 on the deployment of alternative fuels infrastructure. Official Journal of the European Union, 2014.
[8] European Environment Agency. Annual European Union greenhouse gas inventory 1990 – 2016 and inventory report 2018, Submission to the UNFCCC Secretariat, 2018.
[10] Bariss U., Bazbauers G., Blumberga A., Blumberga D. System Dynamics Modeling of Households' Electricity Consumption and Cost-Income Ratio: a Case Study of Latvia. Environmental and Climate Technologies 2017:20:36–50. doi:10.1515/rtuect-2017-000910.1515/rtuect-2017-0009
[12] European Commission. Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions. 20 20 by 2020: Europe’s climate change opportunity COM 2008:1–12.
[13] European Commission. Roadmap to a Single European Transport Area–Towards a competitive and resource efficient transport system, 2011. doi:10.2832/3095510.2832/30955
[14] European Union. Directive 2014/94/EU of the European Parliament and of the Council of 22 October 2014 on the deployment of alternative fuels infrastructure. Official Journal of the European Union, 2014.
[18] European Environment Agency. Annual European Union greenhouse gas inventory 1990 – 2016 and inventory report 2018, Submission to the UNFCCC Secretariat, 2018.
[20] Van den Hoed R., Helmus J.R., de Vries R., Bardok D. Data analysis on the public charge infrastructure in the city of Amsterdam, 2014:1–10.10.1109/EVS.2013.6915009
[22] Morrissey P., Weldon P., O’Mahony M. Future standard and fast charging infrastructure planning: An analysis of electric vehicle charging behaviour. Energy Policy 2016:89:257–70. doi:10.1016/j.enpol.2015.12.00110.1016/j.enpol.2015.12.001
[23] Raslavičius L., Azzopardi B., Keršys A., Starevičius M., Bazaras Ž., Makaras R. Electric vehicles challenges and opportunities: Lithuanian review. Renewable and Sustainable Energy Reviews 2015:42:786–800. doi:10.1016/j.rser.2014.10.07610.1016/j.rser.2014.10.076
[24] Joller L., Varblane U. Learning from an electromobility living lab: Experiences from the Estonian ELMO programme. Case Studies on Transport Policy 2016:4(2):57–67. doi:10.1016/j.cstp.2015.11.00110.1016/j.cstp.2015.11.001
[25] Putnieks U., Gailis M., Kancevica L. Analysis on electric vehicle charging infrastructure in Latvia. Engineering for Rural Development, 11th International Scientific Conference, Latvia University of Agriculture, 2012, p. 400–405.
[26] Berjoza D., Jurgena I. Analysis of distribution of electric vehicle charging stations in the Baltic. Engineering for Rural Development, 14th International Scientific Conference, Latvia University of Agriculture, 2015, p. 258–264.
[27] Rubenis A., Berjoza D., Grīslis A., Francis I. Analysis of the development of the Latvian national electric vehicle charging network (in Latvian). Riga: 2016.
[28] The Ministry of Environmental Protection and Regional Development of the Republic of Latvia. “Reduction of greenhouse gas emissions in the transport sector — aid for the introduction of electric vehicles and their charging infrastructure”, 2014. [Accessed 20.05.2016]. Available: http://www.varam.gov.lv/lat/darbibas_veidi/KPFI/projekti/?doc=17817
[31] Cabinet of Ministers of Republic of Latvia. Grozījums Ministru kabineta 2013. gada 24. septembra noteikumos Nr. 1000 “Valsts akciju sabiedrības “Ceļu satiksmes drošības direkcija” publisko maksas pakalpojumu cenrādis”. Riga: Cabinet of Ministers of Republic of Latvia: 2018.
[32] Klemka J., Rubenis A., Zvirbule A. Development of model for increasing electric vehicle charging capacity with limited available grid power. Engineering for Rural Development, Jelgava: 2019.10.22616/ERDev2019.18.N219
[33] Klemka J., Rubenis A., Adrian L. The opportunities for electric vehicle fast charging networks in Northern regions using smart charging. Engineering for Rural Development, Jelgava: 2019.10.22616/ERDev2019.18.N218
[34] Spöttle M., Jörling K., Schimmel M., Staats M., Grizzel L., Jerram L. et al. Charging infrastructure for electric road vehicles. European Parliament Policy Department for Structural and Cohesion Policies, 2018. doi:10.2861/013597.10.2861/013597