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Benefits and challenges of electrical demand response: A critical review. (2014). Madsen, Henrik ; Pinson, Pierre ; OConnell, Niamh ; OMalley, Mark .
In: Renewable and Sustainable Energy Reviews.
RePEc:eee:rensus:v:39:y:2014:i:c:p:686-699.

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  2. Residential demand response program modelling to compliment grid composition and changes in energy efficiency. (2024). McPherson, Madeleine ; Seatle, Madeleine.
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  3. Quantifying residential energy flexibility potential for demand response programs using observational data from grid outages: Evidence from Pakistan. (2024). Shah, Maryam ; Mehmood, Fahad ; Kazmi, Hussain.
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  4. Power market models for the clean energy transition: State of the art and future research needs. (2024). Botterud, Audun ; Blaisdell-Pijuan, Paris L ; Haugen, Mari ; Somani, Abhishek ; Korps, Magnus ; Belsnes, Michael ; Zhou, Zhi ; Levin, Todd.
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  5. Differentiated power rationing or seasonal power price? Optimal power allocation solution for Chinese industrial enterprises based on the CSW-DEA model. (2024). Su, Weihua ; Wang, Zhen ; Zhang, Chonghui ; Dalia, Streimikiene.
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  6. Innovative Data-Driven Energy Services and Business Models in the Domestic Building Sector. (2023). Longares, Jose Manuel ; Georgopoulos, Giannis ; Tsitsanis, Tasos ; Aranda, Juan.
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  7. Dynamic grid stability in low carbon power systems with minimum inertia. (2023). al Kez, Dlzar ; Ahmed, Faraedoon ; Foley, Aoife ; Cameron, Che ; Best, Robert James ; McLoone, Sean.
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  8. Institutional and contextual drivers of and barriers to incentive-based demand response: A comparative case study in the Pacific Northwest. (2023). Devenish, Anna.
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  12. Are there preferable capacity combinations of renewables and storage? Exploratory quantifications along various technology deployment pathways. (2023). Flamos, Alexandros ; Michas, Serafeim.
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  14. Toward residential flexibility—Consumer willingness to enroll household loads in demand response. (2023). Honkapuro, Samuli ; Sridhar, Araavind ; Rautiainen, Antti ; Wolff, Annika ; Annala, Salla ; Stoklasa, Jan ; Ruiz, Fredy.
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  15. Leveraging hybrid probabilistic multi-objective evolutionary algorithm for dynamic tariff design. (2023). Tian, Longfei ; Luan, Wenpeng ; Zhao, Bochao.
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  16. A systematic review of electricity market liberalisation and its alignment with industrial consumer participation: A comparison between the Nordics and China. (2022). Jorgensen, Bo Norregaard ; Duan, Hongbo ; Ma, Zheng ; Fatras, Nicolas.
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  17. A review of socio-technical barriers to Smart Microgrid development. (2022). Bauer, Pavol ; Elizondo, Laura Ramirez ; Hoppe, Thomas ; Norouzi, Farshid.
    In: Renewable and Sustainable Energy Reviews.
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  18. Exploiting demand-side flexibility: State-of-the-art, open issues and social perspective. (2022). Madsen, H ; Biele, C ; Opaciuk-Gonczaryk, B ; Bohdanowicz, Z ; Kowalski, J ; Blomgren, E. M. V., ; Pourmousavi, Ali S ; Ebrahimy, R ; Banaei, M ; Dettorre, F.
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  19. Data-driven probabilistic machine learning in sustainable smart energy/smart energy systems: Key developments, challenges, and future research opportunities in the context of smart grid paradigm. (2022). Mujeeb, Asad ; Huang, Chao ; Zhang, Dongdong ; Madonski, Rafal ; Ahmad, Tanveer.
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  20. A comprehensive overview of modeling approaches and optimal control strategies for cyber-physical resilience in power systems. (2022). Wu, Thomas ; Liu, Hui ; Zhu, Hongyu ; Ahmad, Tanveer ; Goh, Hui Hwang ; Zhang, Dongdong.
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  21. Promoting wind and photovoltaics renewable energy integration through demand response: Dynamic pricing mechanism design and economic analysis for smart residential communities. (2022). Shi, Gang ; Qing, Jing ; Xu, Qingyang ; Cai, Qiran ; Liang, Qiao-Mei.
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  22. Classifying and modelling demand response in power systems. (2022). Sijm, Jos ; Martinez-Gordon, Rafael ; Morales-Espaa, German .
    In: Energy.
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  23. Obstacles to demand response: Why industrial companies do not adapt their power consumption to volatile power generation. (2022). Weibelzahl, Martin ; Ollig, Philipp ; Keller, Robert ; Fridgen, Gilbert ; Schott, Paul ; Leinauer, Christina.
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  24. Dynamic pricing of electricity: Enabling demand response in domestic households. (2022). Blaschke, Maximilian J.
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  25. Efficient privacy-preserving aggregation for demand side management of residential loads. (2022). Deconinck, Geert ; Bos, Joppe W ; Carpent, Xavier ; Palacios-Garcia, Emilio J.
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  26. Rapid quantification of demand response potential of building HAVC system via data-driven model. (2022). Tian, Zhe ; Niu, Jide ; Zhu, Jie ; Ye, Chuang ; Zhou, Ruoyu.
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  27. Process-to-market matrix mapping: A multi-criteria evaluation framework for industrial processes’ electricity market participation feasibility. (2022). Jorgensen, Bo Norregaard ; Ma, Zheng ; Fatras, Nicolas.
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  28. A new deregulated demand response scheme for load over-shifting city in regulated power market. (2022). Fu, Zhengxin ; Guo, Siming ; Zhao, Yujia ; Yuan, Haoliang ; Lai, Chun Sing ; Wang, Yifei ; Zhu, Weidong ; Xu, Fangyuan.
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  29. Quantifying the effect of multiple load flexibility strategies on commercial building electricity demand and services via surrogate modeling. (2022). Lee, Sang Hoon ; Chandra-Putra, Handi ; Langevin, Jared ; Luo, NA.
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  30. An optimisation model to determine the capacity of a distributed energy resource to contract with a balancing services aggregator. (2022). Hawkes, Adam ; Oluleye, Gbemi ; Rai, Ussama.
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  31. Demand response in buildings: Unlocking energy flexibility through district-level electro-thermal simulation. (2022). Chervet, Philipp ; Gallegos, Pablo ; Kem, Oudom ; Amin, Amin ; Mourshed, Monjur ; Ksontini, Feirouz.
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  35. A Critical Review of Demand Response Products as Resource for Ancillary Services: International Experience and Policy Recommendations. (2021). Pecondon-Tricas, David ; Larrosa-Lopez, Luis ; Ribo-Perez, David ; Alcazar-Ortega, Manuel.
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  36. Effect of Individual Volt/var Control Strategies in LINK -Based Smart Grids with a High Photovoltaic Share. (2021). Ilo, Albana ; Schultis, Daniel-Leon.
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  37. Demand Response Alert Service Based on Appliance Modeling. (2021). Chatzidimitriou, Kyriakos C ; Diou, Christos ; Ioanna-M. Chatzigeorgiou, ; Andreou, Georgios T.
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  38. Thermal comfort maintenance in demand response programs: A critical review. (2021). , Ricardo ; Ricardo, .
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  39. The potential of power-to-heat demand response to improve the flexibility of the energy system: An empirical review. (2021). Dui, Neven ; Abazi, Alajdin ; Markovska, Natasa ; Gjorgievski, Vladimir Z.
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  40. On the value and potential of demand response in the smart island archipelago. (2021). Dominkovi, Dominik Franjo ; Mimica, Marko ; Krajai, Goran ; Capuder, Tomislav.
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  41. Demand response model based on improved Pareto optimum considering seasonal electricity prices for Dongfushan Island. (2021). Nakanishi, Yosuke ; Yu, Liangjun ; Ding, Min ; Wang, Dianhong ; Cao, Weihua ; Wu, Xiaomin.
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  45. Multi-objective economic dispatch with residential demand response programme under renewable obligation. (2021). Bansal, Ramesh C ; Naidoo, Raj M ; Zhang, Jiangfeng ; Hlalele, Thabo G.
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  46. The size, causes, and equity implications of the demand-response gap. (2021). Chapman, Oliver ; Brown, Marilyn A.
    In: Energy Policy.
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  47. A data-driven study of thermostat overrides during demand response events. (2021). Gunay, Burak H ; Sarran, Lucile ; Rode, Carsten ; Hviid, Christian A ; O'Brien, William.
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  48. The flexibility gap: Socioeconomic and geographical factors driving residential flexibility. (2021). Heleno, Miguel ; Ribo-Perez, David ; Alvarez-Bel, Carlos.
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  49. Ex-post evaluation of Interruptible Load programs with a system optimisation perspective. (2021). Bel, Alvarez C ; Garcia, Rodriguez J ; Carrion, A ; Ribo-Perez, D.
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  50. Assessing the value of demand response in a decarbonized energy system – A large-scale model application. (2021). Zophel, Christoph ; Misconel, Steffi ; Most, Dominik.
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  51. Experimental test of a black-box economic model predictive control for residential space heating. (2021). Petersen, Steffen ; Skeie, Kristian Stenerud ; Georges, Laurent ; Knudsen, Michael Dahl.
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  52. Forecasting the price-response of a pool of buildings via homothetic inverse optimization. (2021). Pineda, Salvador ; Morales, Juan Miguel ; Fernandez-Blanco, Ricardo .
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  53. Trends in tools and approaches for modelling the energy transition. (2021). Pfenninger, Stefan ; Pickering, Bryn ; Zakeri, Behnam ; Thellufsen, Jakob Zink ; Chang, Miguel ; Ostergaard, Poul Alberg ; Lund, Henrik.
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  54. Super-relaxation of space–time-quantized ensemble of energy loads to curtail their synchronization after demand response perturbation. (2021). Chertkov, M ; Ouerdane, H ; Metivier, D ; Luchnikov, I.
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  55. Hygro-thermal model for estimation of demand response flexibility of closed refrigerated display cabinets. (2021). Ostermeyer, York ; Kalagasidis, Angela Sasic ; Mnsson, Tommie.
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  57. Determinants of Willingness to Participate in Urban Incentive-Based Energy Demand-Side Response: An Empirical Micro-Data Analysis. (2020). Sun, Zhenming ; Cai, Qiran ; Wang, Bing.
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  58. Artificial intelligence and machine learning approaches to energy demand-side response: A systematic review. (2020). Wattam, Steve ; Elizondo-Gonzalez, Sergio ; Flynn, David ; Kiprakis, Aristides ; Norbu, Sonam ; Kirli, Desen ; Couraud, Benoit ; Robu, Valentin ; Antonopoulos, Ioannis.
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  59. On the assessment and control optimisation of demand response programs in residential buildings. (2020). Finn, Donal P ; Dettorre, Francesco ; de Rosa, Mattia ; Pallonetto, Fabiano.
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  60. Distributed energy systems as common goods: Socio-political acceptance of renewables in intelligent microgrids. (2020). Wolsink, Maarten.
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  61. Demand response, market design and risk: A literature review. (2020). Soares, Isabel ; Sousa, Joana.
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  62. Operation of power distribution networks with new and flexible loads: A case of existing residential low voltage network. (2020). de Cerio, Iker Diaz ; Bak-Jensen, Birgitte ; Heiselberg, Per ; le Dreau, Jerome ; Widen, Joakim ; Marszal-Pomianowska, Anna .
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  63. Load flexibility potential across residential, commercial and industrial sectors in Brazil. (2020). Ferreira, Paula ; Dranka, Geremi Gilson.
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  64. Demand response for variable renewable energy integration: A proposed approach and its impacts. (2020). Stoll, Brady ; McPherson, Madeleine.
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  65. The role of aggregators in facilitating industrial demand response: Evidence from Germany. (2020). Richstein, Jorn C ; von Roon, Serafin ; Holtz, Georg ; Dufter, Christa ; Arnold, Karin ; Stede, Jan.
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  66. Demand response and smart technology in theory and practice: Customer experiences and system actors. (2020). Darby, Sarah J.
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  67. Power markets in transition: Decarbonization, energy efficiency, and short-term demand response. (2020). Weissbart, Christoph ; Mier, Mathias.
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  68. Impact of the chlorine value chain on the demand response potential of the chloralkali process. (2020). Tsatsaronis, George ; Hofmann, Mathias ; Hoffmann, Christian ; Klaucke, Franziska.
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  69. A virtual sensor based self-adjusting control for HVAC fast demand response in commercial buildings towards smart grid applications. (2020). Chen, Shuyue ; Zhang, XU ; Gao, Dian-Ce ; Ran, Fengming.
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  70. Neural-network-based Lagrange multiplier selection for distributed demand response in smart grid. (2020). Kang, Chongqing ; Xia, Qing ; Wang, Jianxiao ; Zhong, Haiwang ; Ruan, Guangchun.
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  71. Scheduling chemical processes for frequency regulation. (2020). Baldea, Michael ; Otashu, Joannah I.
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  72. Exploring the role of ICT on household behavioural energy efficiency to mitigate global warming. (2019). Reichl, Johannes ; Moya, Ana ; Kollmann, Andrea ; Cohen, Jed J ; Bastida, Leire.
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  73. Towards future infrastructures for sustainable multi-energy systems: A review. (2019). Verda, Vittorio ; Bischi, Aldo ; Guelpa, Elisa ; Lund, Henrik ; Chertkov, Michael .
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  74. Review and assessment of the different categories of demand response potentials. (2019). Ferreira, Paula ; Dranka, Geremi Gilson.
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  56. Zugno M, Morales J, Pinson P, Madsen H. Modelling demand response in electricity retail markets as a Stackelberg Game. In: International Association for Energy Economics International Conference, Perth, Australia; 2012.
    Paper not yet in RePEc: Add citation now
  57. Zugno, M. ; Morales, J. ; Pinson, P. ; Madsen, H. A bilevel model for electricity retailers participation in a demand response market environment. 2012 Energy Econ. 36 182-197
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Cocites

Documents in RePEc which have cited the same bibliography

  1. The Dynamic Impacts of Pricing Groundwater. (2023). Hanemann, Michael ; Jessoe, Katrina K ; Bruno, Ellen M.
    In: Department of Agricultural & Resource Economics, UC Berkeley, Working Paper Series.
    RePEc:cdl:agrebk:qt2mx8q1td.

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  2. Retailers strategies facing demand response and markets interactions. (2020). Khalfallah, Haikel ; Clastres, Cedric.
    In: Working Papers.
    RePEc:hal:wpaper:hal-03167543.

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  3. An adverse selection approach to power pricing. (2019). Possamai, Dylan ; Santib, Nicol'As Hern'Andez ; Elie, Romuald ; Ekeland, Ivar ; Alasseur, Cl'Emence .
    In: Papers.
    RePEc:arx:papers:1706.01934.

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  4. Which dynamic pricing rule is most preferred by consumers?—Application of choice experiment. (2017). Tanaka, Kenta ; Managi, Shunsuke ; Yoshida, Yumi .
    In: Journal of Economic Structures.
    RePEc:spr:jecstr:v:6:y:2017:i:1:d:10.1186_s40008-017-0064-0.

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  5. Power to the people: Electricity demand and household behavior. (2017). Vesterberg, Mattias .
    In: Umeå Economic Studies.
    RePEc:hhs:umnees:0942.

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  6. Heterogeneity in price responsiveness of electricity: Contract choice and the role of media coverage. (2017). Vesterberg, Mattias .
    In: Umeå Economic Studies.
    RePEc:hhs:umnees:0940.

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  7. Risk preference and adverse selection for participation in time-of-use electricity pricing programs. (2017). Qiu, Yueming ; Colson, Gregory ; Wetzstein, Michael E.
    In: Resource and Energy Economics.
    RePEc:eee:resene:v:47:y:2017:i:c:p:126-142.

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  8. An overview of Demand Response: Key-elements and international experience. (2017). Paterakis, Nikolaos G ; Erdin, Ozan .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:69:y:2017:i:c:p:871-891.

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  9. Nudges from school children and electricity conservation: Evidence from the “Project Carbon Zero” campaign in Singapore. (2017). Agarwal, Sumit ; Yang, Yang ; Sing, Tien Foo ; Rengarajan, Satyanarain .
    In: Energy Economics.
    RePEc:eee:eneeco:v:61:y:2017:i:c:p:29-41.

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  10. Real-time electricity pricing for industrial customers: Survey and case studies in the United States. (2017). Nezamoddini, Nasim ; Wang, Yong.
    In: Applied Energy.
    RePEc:eee:appene:v:195:y:2017:i:c:p:1023-1037.

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  11. Modelling revenue generation in a dynamically priced mobile telephony service. (2016). Kilmartin, Liam ; Brown, Kenneth N ; Fay, Damien ; Wang, Han.
    In: Telecommunication Systems: Modelling, Analysis, Design and Management.
    RePEc:spr:telsys:v:62:y:2016:i:4:d:10.1007_s11235-015-0106-6.

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  12. Model-based assessment of demand-response measures—A comprehensive literature review. (2016). Bossmann, Tobias ; Eser, Eike Johannes .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:57:y:2016:i:c:p:1637-1656.

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  13. Behavioral aspects of regulation: A discussion on switching and demand response in Turkish electricity market. (2016). ŞİRİN, Selahattin ; Gonul, Mustafa Sinan ; Sirin, Selahattin Murat .
    In: Energy Policy.
    RePEc:eee:enepol:v:97:y:2016:i:c:p:591-602.

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  14. A framework for siting and dispatch of emerging energy resources to realize environmental and health benefits: Case study on peaker power plant displacement. (2016). , Seth ; Casey, Joan A ; Krieger, Elena M.
    In: Energy Policy.
    RePEc:eee:enepol:v:96:y:2016:i:c:p:302-313.

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  15. The potential of energy behaviours in a smart(er) grid: Policy implications from a Portuguese exploratory study. (2016). , Marta ; Martins, Nelson ; Peixoto, Paulo ; Janda, Kathryn B ; Antunes, Carlos Henggeler.
    In: Energy Policy.
    RePEc:eee:enepol:v:90:y:2016:i:c:p:233-245.

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  16. The hourly income elasticity of electricity. (2016). Vesterberg, Mattias .
    In: Energy Economics.
    RePEc:eee:eneeco:v:59:y:2016:i:c:p:188-197.

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  17. Is our everyday comfort for sale? Preferences for demand management on the electricity market. (2016). Broberg, Thomas ; Persson, Lars.
    In: Energy Economics.
    RePEc:eee:eneeco:v:54:y:2016:i:c:p:24-32.

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  18. An optimal time-of-use pricing for urban gas: A study with a multi-agent evolutionary game-theoretic perspective. (2016). Hailu, Atakelty ; Gong, Chengzhu ; Zhu, Kejun ; Tang, Kai.
    In: Applied Energy.
    RePEc:eee:appene:v:163:y:2016:i:c:p:283-294.

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  19. Do Benefits from Dynamic Tariffing Rise? Welfare Effects of Real-Time Pricing under Carbon-Tax-Induced Variable Renewable Energy Supply. (2016). Schill, Wolf-Peter ; Gambardella, Christian ; Pahle, Michael .
    In: Discussion Papers of DIW Berlin.
    RePEc:diw:diwwpp:dp1621.

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  20. Electricity demand response in Japan: Experimental evidence from a residential photovoltaic power-generation system. (2016). Tanaka, Makoto ; Ida, Takanori ; Takanori, Kayo Murakami .
    In: Economics of Energy & Environmental Policy.
    RePEc:aen:eeepjl:eeep5-1-ida.

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  21. The Environmental Impacts of Fuel Switching Power Plants. (2015). Holladay, J ; Soloway, Steven .
    In: Working Papers.
    RePEc:ten:wpaper:2015-05.

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  22. Electricity demand response in Japan:Experimental evidence from a residential photovoltaic generation system. (2015). Tanaka, Makoto ; Ida, Takanori ; Murakami, Kayo .
    In: Discussion papers.
    RePEc:kue:dpaper:e-15-006.

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  23. The Rebound Effect and Energy Efficiency Policy. (2015). Wagner, Gernot ; Rapson, David ; Gillingham, Kenneth.
    In: Working Papers.
    RePEc:fem:femwpa:2014.107.

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  24. Time-based electricity pricing for large-volume customers: A comparison of two buildings under tariff alternatives. (2015). Yalcintas, Melek ; Kaya, Abidin ; Hagen, William T.
    In: Utilities Policy.
    RePEc:eee:juipol:v:37:y:2015:i:c:p:58-68.

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  25. Which electricity market design to encourage the development of demand response?. (2015). Roques, Fabien ; Perez, Yannick ; Rious, Vincent.
    In: Economic Analysis and Policy.
    RePEc:eee:ecanpo:v:48:y:2015:i:c:p:128-138.

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  26. Comparison of control systems for the optimisation of ice storage in a dynamic real time electricity pricing environment. (2015). Murphy, M. D. ; Upton, J. ; OMahony, M. J..
    In: Applied Energy.
    RePEc:eee:appene:v:149:y:2015:i:c:p:392-403.

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  27. Strategies to mitigate declines in the economic value of wind and solar at high penetration in California. (2015). Mills, Andrew D. ; Wiser, Ryan H..
    In: Applied Energy.
    RePEc:eee:appene:v:147:y:2015:i:c:p:269-278.

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  28. Assessing the impact of changes in the electricity price structure on dairy farm energy costs. (2015). De Boer, I. J. M., ; Murphy, M. ; Shalloo, L. ; Upton, J. ; Groot Koerkamp, P. W. G., ; De Boer, I. J. M., .
    In: Applied Energy.
    RePEc:eee:appene:v:137:y:2015:i:c:p:1-8.

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  29. Minimising costs and variability of electricity generation by means of optimal electricity interconnection utilisation. (2014). Tol, Richard ; Lynch, Muireann ; OMalley, Mark J..
    In: Working Paper Series.
    RePEc:sus:susewp:6814.

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  30. Benefits and challenges of electrical demand response: A critical review. (2014). Madsen, Henrik ; Pinson, Pierre ; OConnell, Niamh ; OMalley, Mark .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:39:y:2014:i:c:p:686-699.

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  31. Dynamic salience with intermittent billing: Evidence from smart electricity meters. (2014). Graff Zivin, Joshua ; Gilbert, Ben.
    In: Journal of Economic Behavior & Organization.
    RePEc:eee:jeborg:v:107:y:2014:i:pa:p:176-190.

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  32. Is Mandating Smart Meters Smart?. (2014). Léautier, Thomas-Olivier ; Leautier, Thomas-Olivier.
    In: The Energy Journal.
    RePEc:aen:journl:ej35-4-06.

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  33. Estimating the Impact of Time-of-Use Pricing on Irish Electricity Demand. (2014). Nolan, Anne ; Lyons, Sean ; Di Cosmo, Valeria ; Valeria Di Cosmo, Sean Lyons,, .
    In: The Energy Journal.
    RePEc:aen:journl:ej35-2-06.

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  34. The Impact of Dynamic Pricing on Residential and Small Commercial and Industrial Usage: New Experimental Evidence from Connecticut. (2014). Akaba, Lamine ; Ahmad Faruqui, Sanem Sergici,, .
    In: The Energy Journal.
    RePEc:aen:journl:ej35-1-08.

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  35. How to engage consumers in demand response: a contract perspective. (2013). Meeus, Leonardo ; Glachant, Jean-Michel ; Isabel Azevedo, Leonardo Meeus, Leigh Hancher, Jea, ; Keyaerts, Nico .
    In: RSCAS Working Papers.
    RePEc:rsc:rsceui:2013/76.

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  36. Grid integration and smart grid implementation of emerging technologies in electric power systems through approximate dynamic programming. (2013). Xiao, Jingjie .
    In: MPRA Paper.
    RePEc:pra:mprapa:58696.

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  37. Real-time Pricing in Power Markets: Who Gains?. (2013). Boom, Anette ; Schwenen, Sebastian .
    In: Working Papers.
    RePEc:hhs:cbsnow:2013_001.

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  38. How to engage consumers in demand response: A contract perspective. (2013). Meeus, Leonardo ; Glachant, Jean-Michel ; Azevedo, Isabel ; He, Xian ; Keyaerts, Nico ; Hancher, Leigh .
    In: Utilities Policy.
    RePEc:eee:juipol:v:27:y:2013:i:c:p:108-122.

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  39. Residential demand response reduces air pollutant emissions on peak electricity demand days in New York City. (2013). Gilbraith, Nathaniel ; Powers, Susan E..
    In: Energy Policy.
    RePEc:eee:enepol:v:59:y:2013:i:c:p:459-469.

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  40. Dynamic electricity pricing—Which programs do consumers prefer?. (2013). Paetz, Alexandra-Gwyn ; Dutschke, Elisabeth.
    In: Energy Policy.
    RePEc:eee:enepol:v:59:y:2013:i:c:p:226-234.

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  41. Market-driven coal prices and state-administered electricity prices in China. (2013). Liu, Ming-Hua ; Margaritis, Dimitris ; Zhang, Yang.
    In: Energy Economics.
    RePEc:eee:eneeco:v:40:y:2013:i:c:p:167-175.

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  42. Real-time Pricing in Power Markets: Who Gains?. (2012). Boom, Anette ; Schwenen, Sebastian .
    In: Annual Conference 2012 (Goettingen): New Approaches and Challenges for the Labor Market of the 21st Century.
    RePEc:zbw:vfsc12:66062.

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  43. Is mandating smart meters smart?. (2012). Léautier, Thomas-Olivier.
    In: TSE Working Papers.
    RePEc:tse:wpaper:26343.

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  44. Knowledge is (Less) Power: Experimental Evidence from Residential Energy Use. (2012). Rapson, David ; Jessoe, Katrina .
    In: NBER Working Papers.
    RePEc:nbr:nberwo:18344.

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  45. Survey of Models on Demand, Customer Base-Line and Demand Response and Their Relationships in the Power Market. (2012). Heshmati, Almas.
    In: IZA Discussion Papers.
    RePEc:iza:izadps:dp6637.

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  46. Is mandating smart meters smart?. (2012). Léautier, Thomas-Olivier.
    In: IDEI Working Papers.
    RePEc:ide:wpaper:26342.

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  47. An indeterminate future: Assessing the need for greater US–Canada transmission integration. (2012). Krupa, Joel.
    In: Utilities Policy.
    RePEc:eee:juipol:v:23:y:2012:i:c:p:99-101.

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  48. Residential demand response behavior analysis based on Monte Carlo simulation: The case of Yinchuan in China. (2012). Wang, Bing ; He, Yongxiu ; Xiong, Wei ; Xia, Tian.
    In: Energy.
    RePEc:eee:energy:v:47:y:2012:i:1:p:230-236.

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  49. Real-Time Pricing in the Nordic Power markets. (2012). Savolainen, Maria Kopsakangas ; Svento, Rauli.
    In: Energy Economics.
    RePEc:eee:eneeco:v:34:y:2012:i:4:p:1131-1142.

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  50. Creating a Smarter U.S. Electricity Grid. (2012). Joskow, Paul.
    In: Journal of Economic Perspectives.
    RePEc:aea:jecper:v:26:y:2012:i:1:p:29-48.

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