2. Republic of Latvia Cabinet Regulation No. 496. (2010). Procedures for the Identification of Critical Infrastructures, Including European Critical Infrastructures and Planning and mplementation of Security Measures. [Online]. [Acessed: 9 March 2017] https://likumi.lv/doc.php?id=212031.
4. Niedrite, I., Kreslins, A., Davis, A., & Zeltins, N. (2013). Security of gas supply risk assessment alternatives. In Proceedings of 22nd World Energy Congress, (No. 820, pp. 14), 17 October 2013. Daegu, Korea.
7. Jansons, L., Zeltins, N., & Savickis J. (2016). The Latvian UGS potential and alternative use of underground geological structures. e-Proceedings of 23rd World Energy Congress, 9–13 October 2016, Lütfi Kırdar Congress Center, Istanbul. ISBN: 978-605-89548-9-2.
8. Regulation of the European Parliament and of the Council concerning measures to safeguard the security of gas supply and repealing regulation (EU) No 994/2010, {SWD(2016) 26 final}. [Accessed: 9 March2017]
9. Ivanova, P., Sauhats, A., & Linkevičs, O. (2016). Towards optimization of combined cycle power plants’ start-ups and shut-down. In 57 International Scientific Conference on Power and Electrical Engineering of Riga Technical University (TUCSON), Latvija, Riga.10.1109/RTUCON.2016.7763081
10. Ivanova, P., Sauhats, A., Linkevičs, O., & Balodis, M. (2016). Combined heat and power plants towards efficient and flexible operation. In IEEE 16th International Conference on Environmental and Electrical Engineering (EEEIC), 7–10 June 2016, Florence, Italy.10.1109/EEEIC.2016.7555874
12. Szikszai, A., & Monforti, F. (2011). GEMFLOW: A time-dependent model to assess responses to natural gas supply crises. Energy Policy, 39(9), 5129-5136.10.1016/j.enpol.2011.05.051
13. Parks, P., Kopustinskas, V., & Masera, M. (2015). Probabilistic modeling of security of supply in gas networks and evaluation of new infrastructure. Reliab. Eng. and Syst. Saf. 144, 254–264.10.1016/j.ress.2015.08.005
14. Zemite, L., Gorobecs, M., Smats, A., Jasevics, A., & Shevchenko’s, A. (2017). Genetic algorithm for optimization of power switch allocation in distribution network. In 17th IEEE International Conference on Environment and Electrical Engineering and 1st IEEE Industrial and Commercial Power Systems Europe, EEEIC / I and CPS Europe 2017.10.1109/EEEIC.2017.7977425
15. Zemite, L., Gerhard, J., Gorobetz, M., & Levchenkov, A. (2016). Optimization of distribution system reliability. In the International Conference on Environment and Electrical Engineering.10.1109/EEEIC.2016.7555408
16. Zemite, L., Bode, I., Zeltins, N., Kutjuns, A., & Zbanovs, A. (2018). Analysis of the power system damage hazard from the point of view of the gas supply system. In International Conference on Environment and Electrical Engineering.10.1109/EEEIC.2018.8494380
17. Moshkin, I., & Sauhats, A. (2016). Solving district heating problems by using cooperative game theory methods. In Proceedings of 16th International Conference on Environment and Electrical Engineering.10.1109/EEEIC.2016.7555462
18. Zemite, L., Kutjuns, A., Bode, I., Kunickis, M., & Zeltins, N. (2018). Consistency analysis and data consultation of gas system of gas-electricity network in Latvia. Latvian Journal of Physics and Technical Sciences, 55(1)., 22–34.10.2478/lpts-2018-0003
19. Zemite, L., Gerhard, J., Gorobetz, M., & Levchenkov, A. (2015). Optimization of distribution systems reliability with the stochastic behavior. In 56th International Scientific Conference on Power and Electrical Engineering of Riga Technical University, RTUCON 2015.10.1109/RTUCON.2015.7343172