• Non ci sono risultati.

Riferimenti bibliografici

Nel documento Apertura del (pagine 92-98)

[1] GME, Vademecum della Borsa Elettrica.

[2] Eugenio Picozza, Sergio M. Sambri (2015) Il diritto dell’energia, Padova, CE-DAM.

[3] Terna, Codice di Rete (2017), Capitolo 4.4 – Risorse per il dispacciamento.

[4] Energy@Home (2018), Partecipazione della domanda flessibile al Mercato del Servizio di Dispacciamento.

[5] GSE, Rapporto Statistico (2016).

[6] DNV GL, Integration of Renewable Energy in Europe (2014).

[7] Scott P. Burger, Max Luke, Business models for distributed energy resources: A review and empirical analysis, Energy Policy, Volume 109, 2017, Pages 230-248. [8] Andreia M. Carreiro, Humberto M. Jorge, Carlos Henggeler Antunes, Energy

management systems aggregators: A literature survey, Renewable and Sustainable Energy Reviews, Volume 73, 2017, Pages 1160-1172.

[9] Benjamin Matek, Karl Gawell, The Benefits of Baseload Renewables: A Misun-derstood Energy Technology, The Electricity Journal, Volume 28, Issue 2, 2015, Pages 101-112.

[10] Scott Burger, Jose Pablo Chaves-Ávila, Carlos Batlle, Ignacio J. Pérez-Arriaga, A review of the value of aggregators in electricity systems, Renewable and Sustain-able Energy Reviews, Volume 77, 2017, Pages 395-405.

[11] Juan M. Morales , Antonio J. Conejo, Henrik Madsen, Pierre Pinson, Marco Zugno (2014) Integrating Renewables in Electricity Markets. Operational Prob-lems, Springer.

[12] H. de Heer, M. van der Laan, “USEF: Work stream on aggregator implementation models”, 2016.

[13] R. Doherty and M. O'Malley, A new approach to quantify reserve demand in sys-tems with significant installed wind capacity, in IEEE Transactions on Power

82 Volume 40, 2016, Pages 26-35.

[15] Cherrelle Eid, L. Andrew Bollinger, Binod Koirala, Daniel Scholten, Emanuele Facchinetti, Johan Lilliestam, Rudi Hakvoort, Market integration of local energy systems: Is local energy management compatible with European regulation for re-tail competition?, Energy, Volume 114, 2016, Pages 913-922.

[16] Scott P. Burger, Max Luke, Business models for distributed energy resources: A review and empirical analysis, Energy Policy, Volume 109, 2017, Pages 230-248. [17] Andreia M. Carreiro, Humberto M. Jorge, Carlos Henggeler Antunes, Energy

management systems aggregators: A literature survey, Renewable and Sustainable Energy Reviews, Volume 73, 2017, Pages 1160-1172.

[18] Benjamin Matek, Karl Gawell, The Benefits of Baseload Renewables: A Misun-derstood Energy Technology, The Electricity Journal, Volume 28, Issue 2, 2015, Pages 101-112.

[19] Morales, J. M., Conejo, A. J., Madsen, H., Pinson, P., & Zugno, M. (2013).

Inte-grating renewables in electricity markets: operational problems (Vol. 205).

Springer Science & Business Media.

[20] R. Doherty and M. O'Malley, A new approach to quantify reserve demand in sys-tems with significant installed wind capacity, in IEEE Transactions on Power

Sys-tems, vol. 20, no. 2, pp. 587-595, May 2005.

[21] Yan, J., Sun, F., Chou, S. K., Desideri, U., Li, H., Campana, P. E., & Xiong, R. (2017). Transformative Innovations for a Sustainable Future. Applied Energy,

204, 867-872.

[22] Ariana Ramos, Cedric De Jonghe, Virginia Gómez, Ronnie Belmans, Realizing the smart grid's potential: Defining local markets for flexibility, Utilities Policy, Volume 40, 2016, Pages 26-35.

[23] Cherrelle Eid, L. Andrew Bollinger, Binod Koirala, Daniel Scholten, Emanuele Facchinetti, Johan Lilliestam, Rudi Hakvoort,

[24] Market integration of local energy systems: Is local energy management compati-ble with European regulation for retail competition?, Energy, Volume 114, 2016, Pages 913-922.

[25] GSE, Rapporto statistico, Energia da fonti rinnovabili in Italia (2016).

[26] Soares, T. (2017). Renewable energy sources offering flexibility through

electric-ity markets (Doctoral dissertation, Technical Universelectric-ity of Denmark, Department

of Electrical Engineering).

[27] N. Phuangpornpitak, S. Tia, Opportunities and Challenges of Integrating Renew-able Energy in Smart Grid System, Energy Procedia, Volume 34, 2013, Pages 282-290.

83 [29] Mattia Cai, Niccolò Cusumano, Arturo Lorenzoni, Federico Pontoni, A compre-hensive ex-post assessment of RES deployment in Italy: Jobs, value added and import leakages, Energy Policy, Volume 110, 2017, Pages 234-245.

[30] Luca Lo Schiavo, Maurizio Delfanti, Elena Fumagalli, Valeria Olivieri, Changing the regulation for regulating the change: Innovation-driven regulatory develop-ments for smart grids, smart metering and e-mobility in Italy, Energy Policy, Vol-ume 57, 2013, Pages 506-517.

[31] Aleksandra Roos, Designing a joint market for procurement of transmission and distribution system services from demand flexibility, Renewable Energy Focus, Volume 21, 2017, Pages 16-24.

[32] Sophia Ruester, Sebastian Schwenen, Carlos Batlle, Ignacio Pérez-Arriaga, From distribution networks to smart distribution systems: Rethinking the regulation of European electricity DSOs, Utilities Policy, Volume 31, 2014, Pages 229-237. [33] Scheepers, M. J. J., Jansen, J. C., De Joode, J., Bauknecht, D., Gomez, T.,

Pudji-anto, D., ... & Ropenus, S. (2007).Regulatory improvements for effective

integra-tion of distributed generaintegra-tion into electricity distribuintegra-tion networks (No.

ECN-E--07-083). Energy research Centre of the Netherlands ECN.

[34] Migliavacca, G., Rossi, M., Six, D., Džamarija, M., Horsmanheimo, S., Madina, C., ... & Morales, J. M. (2017). SmartNet: H2020 project analysing TSO–DSO in-teraction to enable ancillary services provision from distribution ne-tworks. CIRED-Open Access Proceedings Journal, 2017(1), 1998-2002.

[35] Salovaara, K., Makkonen, M., Gore, O., & Honkapuro, S. (2016). Electricity mar-kets framework in Neo-Carbon Energy 2050 scenarios. Neo-Carbon Energy

Working Paper, 3, 2016.

[36] Samson Yemane Hadush, Leonardo Meeus, DSO-TSO cooperation issues and so-lutions for distribution grid congestion management, Energy Policy, Volume 120, [37] 2018, Pages 610-621.

[38] Helena Gerard, Enrique Israel Rivero Puente, Daan Six, Coordination between transmission and distribution system operators in the electricity sector: A concep-tual framework, Utilities Policy, Volume 50, 2018, Pages 40-48.

[39] Gerard, H., Rivero, E., & Six, D. (2016). Basic schemes for TSO-DSO coordina-tion and ancillary services provision. SMARTNET Deliv. D,1.

[40] Delfanti, M., Galliani, A., & Olivieri, V. (2014, June). The new role of DSOs: Ancillary Services from RES towards a local dispatch. In Cired Workshop, Rome.

[41] Gielnik, M. M., Frese, M., Kahara-Kawuki, A., Wasswa Katono, I., Kyejjusa, S., Ngoma, M., ... & Oyugi, J. (2015). Action and action-regulation in

entrepreneur-84 [42] Arín, R. C. (2013). Economic regulation of distribution system operators and its

adaptation to the penetration of distributed energy resources and smart grid tech-nologies (Doctoral dissertation, Universidad Pontificia Comillas).

[43] Lavrijssen, S., Marhold, A., & Trias, A. (2016). The Changing World of the DSO in a Smart Energy System Environment: Key Issues and Policy Recommenda-tions.

[44] A. Picciariello, K. Alvehag and L. Söder, "State-of-art review on regulation for distributed generation integration in distribution systems," 2012 9th International

Conference on the European Energy Market, Florence, 2012, pp. 1-8.

[45] Jansen, J. C., Van der Welle, A. J., & De Joode, J. (2007). The evolving role of the DSO in efficiently accommodating distributed generation. DG-GRID project

report.

[46] Gangale, F., Vasiljevska, J., Covrig, C. F., Mengolini, A., & Fulli, G. (2017). Smart grid projects outlook 2017. Joint Research Centre of the European

Com-mission: Petten, The Netherlands.

[47] Natale, N., Pilo, F., Pisano, G., Soma, G. G., Coppo, M., Turri, R., ... & Cantù, M. (2016). Assessment of price and quantity of ancillary services provided by active distribution systems at the TSO/DSO interface.

[48] Jenkins, J. D., & Pérez-Arriaga, I. J. (2017). Improved regulatory approaches for the remuneration of electricity distribution utilities with high penetrations of dis-tributed energy resources. The Energy Journal, 38(3), 28-29.

[49] Anuj Banshwar, Naveen Kumar Sharma, Yog Raj Sood, Rajnish Shrivastava, Re-newable energy sources as a new participant in ancillary service markets, Energy Strategy Reviews, Volume 18, 2017, Pages 106-120.

[50] Anuj Banshwar, Naveen Kumar Sharma, Yog Raj Sood, Rajnish Shrivastava, Market based procurement of energy and ancillary services from Renewable En-ergy Sources in deregulated environment, Renewable EnEn-ergy, Volume 101, 2017, Pages 1390-1400.

[51] C. Brunetto, G. Tina, Wind generation imbalances penalties in day-ahead energy markets: The Italian case, Electric Power Systems Research, Volume 81, Issue 7, 2011, Pages 1446-1455.

[52] Reinier A.C. van der Veen, Rudi A. Hakvoort, The electricity balancing market: Exploring the design challenge, Utilities Policy, Volume 43, Part B, 2016, Pages 186-194.

[53] SEDC, “Explicit Demand Response in Europe Mapping the Markets 2017”. [54] FIORAVANTE, S. (2014). Progettazione e realizzazione di uno strumento di

85

IEEE Transactions on Power Systems, vol. 32, no. 3, pp. 1891-1901, May 2017.

[56] Y. Gu, Z. Zhou, R. Bo, L. Hecker, Jie Yan and J. Okullo, "Quantifying the bene-fits of energy and ancillary services market," 2013 IEEE Power & Energy Society

General Meeting, Vancouver, BC, 2013, pp. 1-5.

[57] H. Höschle, C. De Jonghe, D. Six and R. Belmans, "Capacity remuneration mechanisms and the transition to low-carbon power systems," 2015 12th

Interna-tional Conference on the European Energy Market (EEM), Lisbon, 2015, pp. 1-5.

[58] Van Hulle, F., Holttinen, H., Kiviluoma, J., & Cutululis, N. (2012, November). Ancillary services for the European grid with high shares of wind and solar power. In 11th International Workshop on Large-Scale Integration of Wind

Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants.

[59] Tong Wu, M. Rothleder, Z. Alaywan and A. D. Papalexopoulos, "Pricing energy and ancillary services in integrated market systems by an optimal power flow," in

IEEE Transactions on Power Systems, vol. 19, no. 1, pp. 339-347, Feb. 2004.

[60] R. Raineri, S. Ríos, D. Schiele, Technical and economic aspects of ancillary ser-vices markets in the electric power industry: an international comparison, Energy Policy, Volume 34, Issue 13, 2006, Pages 1540-1555.

[61] R. Gustavsson, S. Hussain and A. Saleem, "Ancillary services for smart grids — Power quality markets," 2013 IEEE Grenoble Conference, Grenoble, 2013, pp. 1-6.

[62] Moss, B., Leo, M., Anders, H., & Kavi, K. (2011). Ancillary Service Revenue Opportunities from Electric Vehicles via Demand Response.

[63] MacDonald, J., Cappers, P., Callaway, D., & Kiliccote, S. (2012). Demand re-sponse providing ancillary services. Grid-Interop.

[64] DELFANTIM, F., & MERLO, M. (2015). Energy storagesystemson distribution networksto provide multiG servicesregulation. In CIRED.

[65] Merino, J., Inés, G., Turienzo, E., Carlos, M., Cobelo, I., Andrei, M., ... & Pekka, K. (2016). Ancillary service provision by RES and DSM connected at distribution level in the future power system. SmartNet project D, 1, 1.

[66] Elia, N. V. (2013). Evolution of ancillary services needs to balance the Belgian control area towards 2018. Brussels, Belgium, Tech. Rep.

[67] N. Natale, F. Pilo, G. Pisano and G. G. Soma, "Distribution system participation to the Italian ancillary service market," 2016 AEIT International Annual

Confer-ence (AEIT), Capri, 2016, pp. 1-6.

[68] Delfanti, M., Olivieri, V., Larzeni, S., & Schiavo, L. L. (2016). Regulatory incen-tive mechanisms for promoting investments in Smart Distribution System.

86 [70] R. Belhomme et al., "Overview of the electricity system market and service layers

in France, UK and Germany," 2016 13th International Conference on the

Euro-pean Energy Market (EEM), Porto, 2016, pp. 1-5.

[71] G. Passarello, G. M. Tina and C. Brunetto, "Modeling of Italian ancillary services market: Sicilian case study," 2015 International Conference on Clean Electrical

Power (ICCEP), Taormina, 2015, pp. 370-375.

[72] T. Haring and G. Andersson, "Cost Allocation in Ancillary Service Markets,"

2014 47th Hawaii International Conference on System Sciences, Waikoloa, HI,

2014, pp. 2285-2294.

[73] A. M. Pirbazari, "Ancillary services definitions, markets and practices in the world," 2010 IEEE/PES Transmission and Distribution Conference and

Exposi-tion: Latin America (T&D-LA), Sao Paulo, 2010, pp. 32-36.

[74] Helena Gerard, Enrique Israel Rivero Puente, Daan Six, Coordination between transmission and distribution system operators in the electricity sector: A concep-tual framework, Utilities Policy, Volume 50, 2018, Pages 40-48.

[75] S. Nassuato, G. Magistrati, G. Marchegiani, C. Brivio, M. Delfanti, D. Falabretti, M. Merlo, Distributed Storage for the Provision of Ancillary Services to the Main Grid: Project PRESTO, Energy Procedia, Volume 99, 2016, Pages 182-193. [76] D. Falabretti, M. Moncecchi, C. Brivio, M. Delfanti, M. Merlo and V. Musolino,

"IoT-oriented management of distributed energy storage for the primary fre-quency control," 2017 IEEE International Conference on Environment and

Elec-trical Engineering and 2017 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe), Milan, 2017, pp. 1-6.

[77] Delfanti, M., Falabretti, D., Mandelli, S., Merlo, M., & Moncecchi, M. (2016). Energy planning approach for an efficient distribution grid.

[78] M. Delfanti et al., "Dispersed generation to provide ancillary services: AlpStore project," 2013 International Conference on Clean Electrical Power (ICCEP), Al-ghero, 2013, pp. 133-138.

[79] G. Migliavacca et al., "SmartNet: H2020 project analysing TSO–DSO interaction to enable ancillary services provision from distribution networks," in CIRED -

Open Access Proceedings Journal, vol. 2017, no. 1, pp. 1998-2002, 10 2017.

[80] M. Sanduleac, C. Chimirel, M. Eremia, L. Toma and J. Martins, "Supporting mar-ket solutions by calculating ancillary services and quality of service with metrol-ogy meters," 2016 IEEE PES Innovative Smart Grid Technologies Conference

87 and Energy Society General Meeting (pp. 1-8). San Diego, California: IEEE. [82] Igor Kuzle, Darjan Bosnjak and Sejid Tesnjak, "An overview of ancillary services

in an open market environment," 2007 Mediterranean Conference on Control &

Automation, Athens, 2007, pp. 1-6.

[83] H. Singh and A. Papalexopoulos, "Competitive procurement of ancillary services by an independent system operator," in IEEE Transactions on Power Systems, vol. 14, no. 2, pp. 498-504, May 1999.

[84] Delfanti, M., Galliani, A., & Olivieri, V. (2014, June). The new role of DSOs: Ancillary Services from RES towards a local dispatch. In Cired Workshop, Rome.

Nel documento Apertura del (pagine 92-98)

Documenti correlati