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From electricity smart grids to smart energy systems – A market operation based approach and understanding. (2012). Andersen, Anders N. ; Ostergaard, Poul Alberg ; Lund, Henrik ; Connolly, David ; Mathiesen, Brian Vad.
In: Energy.
RePEc:eee:energy:v:42:y:2012:i:1:p:96-102.

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  23. A Bayesian approach with urban-scale energy model to calibrate building energy consumption for space heating: A case study of application in Beijing. (2022). Wang, Mingming ; Na, Wei.
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  56. The role of electrification and hydrogen in breaking the biomass bottleneck of the renewable energy system – A study on the Danish energy system. (2020). Pedersen, Sigurd Lauge ; Hansen, Anders Bavnhoj ; Mathiesen, Brian Vad ; Mortensen, Anders Winther ; Wenzel, Henrik ; Grandal, Rune Duban.
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  58. Interactive Buildings: A Review. (2019). Henze, Gregor P ; Fallahi, Zahra.
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  60. Sectoral Interactions as Carbon Dioxide Emissions Approach Zero in a Highly-Renewable European Energy System. (2019). Greiner, Martin ; Schafer, Mirko ; Brown, Tom.
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  62. District Heating Systems: An Analysis of Strengths, Weaknesses, Opportunities, and Threats of the 4GDH. (2019). Posch, Alfred ; Kuttin, Fabian ; Schweiger, Gerald.
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  63. Sector Coupling in the North Sea Region—A Review on the Energy System Modelling Perspective. (2019). Islam, Md Nasimul.
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  64. District Heating Network Demand Prediction Using a Physics-Based Energy Model with a Bayesian Approach for Parameter Calibration. (2019). Yu, Zhibin ; Friedrich, Daniel ; Chen, SI.
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  65. From Carbon Calculators to Energy System Analysis in Cities. (2019). Mathiesen, Brian Vad ; Drysdale, David ; Lund, Henrik.
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  66. Techno-economic analysis of a trigeneration system based on biomass gasification. (2019). Costa, M ; Correia, D ; Pereira, S ; Segurado, R.
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  68. Balancing Europe: Can district heating affect the flexibility potential of Norwegian hydropower resources?. (2019). Bozhkova, Kristina N ; Askeland, Kristine ; Sorknas, Peter.
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  69. Improving the profitability of anaerobic digestion: is the public support framework compatible with participation in the day-ahead electricity market?. (2019). Buysse, Jeroen ; Willeghems, Gwen .
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  70. Feasibility of 100% renewable energy-based electricity production for cities with storage and flexibility. (2019). Develder, Chris ; Strobbe, Matthias ; Mets, Kevin ; Narayanan, Arun.
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  71. Evaluating rotational inertia as a component of grid reliability with high penetrations of variable renewable energy. (2019). Papageorgiou, Dimitri J ; Johnson, Samuel C ; Webber, Michael E ; Rhodes, Joshua D ; Deetjen, Thomas A ; Mallapragada, Dharik S.
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  72. Faults in district heating customer installations and ways to approach them: Experiences from Swedish utilities. (2019). Kallioniemi, Per-Olof Johansson ; Mnsson, Sara ; Sernhed, Kerstin ; van Oevelen, Tijs ; Thern, Marcus.
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  73. Heat Roadmap Europe: Heat distribution costs. (2019). Wiechers, Eva ; Persson, Urban ; Werner, Sven ; Moller, Bernd .
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  74. Status and perspectives on 100% renewable energy systems. (2019). Lund, Henrik ; Breyer, Christian ; Hansen, Kenneth.
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  75. Analytic versus solver-based calculated daily operations of district energy plants. (2019). Ostergaard, Poul Alberg ; Andersen, Anders N.
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  76. Optimising energy flows and synergies between energy networks. (2019). Fambri, Gabriele ; Badami, Marco.
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  77. Improving the power share of waste-driven CHP plants via parallelization with a small-scale Rankine cycle, a thermodynamic analysis. (2019). Arabkoohsar, A ; Nami, H.
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  78. A multi-layer energy modelling methodology to assess the impact of heat-electricity integration strategies: The case of the residential cooking sector in Italy. (2019). Colombo, Emanuela ; Rocco, Matteo Vincenzo ; Lombardi, Francesco.
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  79. A Study on Determinant Factors in Smart City Development: An Analytic Hierarchy Process Analysis. (2018). Lee, Eunuk ; Jung, Yuseok ; Myeong, Seunghwan.
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  80. Unified Algorithm for Demand-Side Appliance Commitment. (2018). Emara, Hassan M ; Agamy, Momen S ; Besheer, Ahmad H ; Bahgat, Ahmed .
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  81. Life Cycle Cost of Heat Supply to Areas with Detached Houses—A Comparison of District Heating and Heat Pumps from an Energy System Perspective. (2018). Dotzauer, Erik ; Myhren, Jonn Are ; Gustafsson, Moa Swing.
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  82. An Efficient Power Scheduling in Smart Homes Using Jaya Based Optimization with Time-of-Use and Critical Peak Pricing Schemes. (2018). Javaid, Nadeem ; Samuel, Omaji ; Ishmanov, Farruh ; Afzal, Muhammad Khalil ; Ahmed, Syed Hassan.
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  83. The lithium-ion battery: State of the art and future perspectives. (2018). Pasaoglu, Guzay ; Carvalho, Monica ; Dufo-Lopez, Rodolfo ; Zubi, Ghassan.
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  84. A survey on electric vehicle transportation within smart grid system. (2018). Shaukat, N ; Ullah, Z ; Jawad, M ; Anwar, S M ; Majid, M ; Farid, U ; Khan, J ; Mehmood, C A ; Ali, S M.
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  85. Correlation between hydrolysis rate constant and chemical composition of energy crops. (2018). Dandikas, Vasilis ; Koch, Konrad ; Drewes, Jorg E ; Eckl, Thomas ; Lichti, Fabian ; Heuwinkel, Hauke.
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  86. Optimal design of the electric connection of a wind farm. (2018). Smail, Houria ; Medjdoub, Abdellah ; Alkama, Rezak.
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  87. Future district heating systems and technologies: On the role of smart energy systems and 4th generation district heating. (2018). Lund, Henrik ; Mathiesen, Brian Vad ; Ostergaard, Poul Alberg ; Duic, Neven.
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  88. District energy systems: Modelling paradigms and general-purpose tools. (2018). Schweiger, Gerald ; Leusbrock, Ingo ; Streicher, Wolfgang ; Engel, Georg ; Pertschy, Reinhard ; Nageler, Peter ; O'Donovan, Keith ; Falay, Basak ; Heimrath, Richard.
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  89. The electricity market in a renewable energy system. (2018). Djorup, Soren ; Sorknas, Peter ; Thellufsen, Jakob Zinck .
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  90. Synergies of sector coupling and transmission reinforcement in a cost-optimised, highly renewable European energy system. (2018). Brown, T ; Greiner, M ; Schramm, S ; Kies, A ; Schlachtberger, D.
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  91. EnergiBUS4home – Sustainable energy resourcing in low-energy buildings. (2018). Rodder, Maximilian ; Adam, Mario ; Neef, Matthias ; Kirschner, Daniel ; Frank, Lena.
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  92. Impact of large scale power plant connection on congestion in the algerian electricity transmission system. (2018). Smail, Houria ; Medjdoub, Abdellah ; Alkama, Rezak.
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  93. A smart energy system approach vs a non-integrated renewable energy system approach to designing a future energy system in Zagreb. (2018). Baekovi, Ivan ; Ostergaard, Poul Alberg.
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  94. Residential versus communal combination of photovoltaic and battery in smart energy systems. (2018). Marczinkowski, Hannah Mareike ; Ostergaard, Poul Alberg.
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  95. Renewable heating strategies and their consequences for storage and grid infrastructures comparing a smart grid to a smart energy systems approach. (2018). Lund, Henrik.
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  96. Local smart energy systems and cross-system integration. (2018). Baekovi, Ivan ; Ostergaard, Poul Alberg.
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  97. Do Smart Grids boost investments in domestic PV plants? Evidence from the Italian electricity market. (2018). moretto, michele ; Bertolini, Marina ; D'Alpaos, Chiara.
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  98. A robust optimization approach for integrated community energy system in energy and ancillary service markets. (2018). Zhou, Yizhou ; Chen, Sheng ; Zang, Haixiang ; Cheung, Kwok W ; Sun, Guoqiang ; Wei, Zhinong.
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  99. Smart rules and thermal, electric and hydro storages for the optimum operation of a renewable energy system. (2018). Rech, S ; Lazzaretto, A.
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  100. The pattern of electricity use in residential sector: The experiences from 133 economies. (2018). Liao, Hua ; Cao, Huai-Shu .
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  102. Multilevel policies for radical transition: Governance for a 100% renewable energy system. (2017). .
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  103. Nuclear Power and Resource Efficiency—A Proposal for a Revised Primary Energy Factor. (2017). Eriksson, Ola.
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  104. Heat Roadmap Europe: Large-Scale Electric Heat Pumps in District Heating Systems. (2017). Averfalk, Helge ; Mathiesen, Brian Vad ; David, Andrei ; Lund, Henrik ; Werner, Sven.
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  105. Generalized Energy Flow Analysis Considering Electricity Gas and Heat Subsystems in Local-Area Energy Systems Integration. (2017). Wang, Yingrui ; Shi, Jiaqi ; Zhang, Jianhua.
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  106. Vision for wind energy with a smart grid in Izmir. (2017). Kokturk, G ; Toku, A.
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  107. On heat pumps in smart grids: A review. (2017). Fischer, David ; Madani, Hatef.
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  108. Trends of European research and development in district heating technologies. (2017). Sayegh, M A ; Piekarska, K ; Jouhara, H ; Nannou, T ; Miniewicz, M ; Jadwiszczak, P ; Danielewicz, J.
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  109. Building smart grid to power the next century in Taiwan. (2017). , Amy ; Chen, Jack .
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  110. A large-scale renewable electricity supply system by 2030: Solar, wind, energy efficiency, storage and inertia for the South West Interconnected System (SWIS) in Western Australia. (2017). Laslett, Dean ; Jennings, Philip ; Creagh, Chris ; Carter, Craig .
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  111. Discovering residential electricity consumption patterns through smart-meter data mining: A case study from China. (2017). Zhou, Kaile ; Shen, Jianxin ; Yang, Changhui.
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  112. Dynamic battery equalization with energy and time efficiency for electric vehicles. (2017). Wu, Zhou ; Tang, Ruoli ; Ling, Rui.
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  113. Climate-neutral and sustainable campus Leuphana University of Lueneburg. (2017). Opel, O ; Ruck, W. K. L., ; Tribel, A ; Geffken, J ; Werner, K F ; Strodel, N.
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  114. International review of district heating and cooling. (2017). Werner, Sven.
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  115. Smart energy and smart energy systems. (2017). Connolly, David ; Lund, Henrik ; Mathiesen, Brian Vad ; Ostergaard, Poul Alberg.
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  116. The benefits of cooperation in a highly renewable European electricity network. (2017). Schlachtberger, D P ; Greiner, M ; Schramm, S ; Brown, T.
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  117. Cross-border versus cross-sector interconnectivity in renewable energy systems. (2017). Thellufsen, Jakob Zinck ; Lund, Henrik.
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  118. Incentives and barriers for wind power expansion and system integration in Denmark. (2017). Hvelplund, Frede ; Meyer, Niels I ; Ostergaard, Poul Alberg.
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  119. Morphological analysis of energy services: Paving the way to quality differentiation in the power sector. (2017). Salah, Florian ; Weinhardt, Christof ; Will, Christian ; Schuller, Alexander ; Flath, Christoph M.
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  120. Fault detection and operation optimization in district heating substations based on data mining techniques. (2017). Xue, Puning ; Zhou, Zhigang ; Fang, Xiumu ; Liu, Yaowen ; Chen, Xin.
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  121. Optimization of a flexible multi-generation system based on wood chip gasification and methanol production. (2017). Lythcke-Jorgensen, Christoffer ; Haglind, Fredrik ; Gadsboll, Rasmus Ostergaard ; Munster, Marie ; Hansen, Anders Bavnhoj ; Algren, Loui ; Clausen, Lasse Rongaard .
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  122. Optimal storage under uncertainty: investigating the implications of frugality and prudence. (2017). Durmaz, Tunç.
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  123. Precautionary Storage in Electricity Markets. (2016). Durmaz, Tunç.
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  124. DG Mix and Energy Storage Units for Optimal Planning of Self-Sufficient Micro Energy Grids. (2016). Gabbar, Hossam A ; Zidan, Aboelsood .
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  125. Investing in Photovoltaics: Timing, Plant Sizing and Smart Grids Flexibility. (2016). moretto, michele ; Dalpaos, Chiara ; Bertolini, Marina.
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  126. Precautionary Storage in Electricity Markets. (2016). Durmaz, Tunç.
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  127. Energy storage in the energy transition context: A technology review. (2016). Gallo, A B ; Dos, Moutinho E ; Santos, M M ; Simes-Moreira, J R.
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  128. Smart Energy Europe: The technical and economic impact of one potential 100% renewable energy scenario for the European Union. (2016). Connolly, D ; Mathiesen, B V ; Lund, H.
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  129. A review of renewable energy applications in buildings in the hot-summer and warm-winter region of China. (2016). Li, Dayao ; He, Jiang.
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  130. Understanding household energy consumption behavior: The contribution of energy big data analytics. (2016). Zhou, Kaile ; Yang, Shanlin.
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  131. Optimal operation of insular electricity grids under high RES penetration. (2016). Simoglou, Christos K ; Bakirtzis, Anastasios G ; Biskas, Pandelis N.
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  132. Typology of centralised and decentralised visions for electricity infrastructure. (2016). Bauknecht, Dierk ; Funcke, Simon .
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  133. Anode partial flooding modelling of proton exchange membrane fuel cells: Model development and validation. (2016). Mamlouk, Mohamed ; Chen, Rui ; Du, Shangfeng ; Xing, Lei ; Scott, Keith .
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  134. Designing optimized energy scenarios for an Italian Alpine valley: the case of Giudicarie Esteriori. (2016). Crema, Luigi ; Viesi, Diego ; Shahriar, MD.
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  135. Comparison of district heating expansion potential based on consumer-economy or socio-economy. (2016). Moller, Bernd ; Grundahl, Lars ; Nielsen, Steffen ; Lund, Henrik.
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  136. Two methods for decreasing the flexibility gap in national energy systems. (2016). Bjeli, Ilija Batas ; Rajakovi, Nikola ; Krajai, Goran ; Dui, Neven.
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  137. Simulation of the impacts on carbon dioxide emissions from replacement of a conventional Brazilian taxi fleet by electric vehicles. (2016). Rodrigues, Ana Carolina ; Sodre, Jose Ricardo .
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  138. On integrating large shares of variable renewables into the electricity system. (2016). Auer, Hans ; Haas, Reinhard.
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  139. Addressing the main challenges of energy security in the twenty-first century – Contributions of the conferences on Sustainable Development of Energy, Water and Environment Systems. (2016). Lund, Henrik ; Markovska, Natasa ; Dui, Neven ; Mathiesen, Brian Vad ; Guzovi, Zvonimir ; Piacentino, Antonio ; Schlor, Holger .
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  140. Market integration of local energy systems: Is local energy management compatible with European regulation for retail competition?. (2016). Hakvoort, Rudi ; Eid, Cherrelle ; Scholten, Daniel ; Koirala, Binod ; Bollinger, Andrew L ; Lilliestam, Johan ; Facchinetti, Emanuele .
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  141. Development of a user-friendly, low-cost home energy monitoring and recording system. (2016). Fletcher, James ; Malalasekera, Weeratunge .
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  142. A methodology for designing flexible multi-generation systems. (2016). Lythcke-Jorgensen, Christoffer ; Ensinas, Adriano Viana ; Munster, Marie ; Haglind, Fredrik.
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  143. The potential of grid-orientated distributed cogeneration on the minutes reserve market and how changing the operating mode impacts on CO2 emissions. (2016). Merten, Frank ; Kruger, Christine ; Schuwer, Dietmar ; Nebel, Arjuna .
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  144. Context sensitive production planning and energy management approach in energy intensive industries. (2016). Sucic, Boris ; Vuk, Tomaz ; Pusnik, Matevz ; Al-Mansour, Fouad .
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  145. Sustainable integration of intermittent renewable energy and electrified light-duty transportation through repurposing batteries of plug-in electric vehicles. (2016). Bibeau, Eric ; Shokrzadeh, Shahab .
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  146. Numerical study of the effect of relative humidity and stoichiometric flow ratio on PEM (proton exchange membrane) fuel cell performance with various channel lengths: An anode partial flooding modelli. (2016). Xing, Lei ; Liu, Chunbo ; Yan, Yongsheng ; Scott, Keith ; Cai, Qiong ; Xu, Chenxi .
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  147. Advanced lithium ion battery modeling and nonlinear analysis based on robust method in frequency domain: Nonlinear characterization and non-parametric modeling. (2016). van den Bossche, P ; Timmermans, J M ; Relan, R ; Omar, N ; van Mierlo, J ; Firouz, Y.
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  148. Exergy analysis of an adiabatic compressed air energy storage system using a cascade of phase change materials. (2016). Tessier, Michael J ; Narine, Suresh S ; Bouzidi, Laziz ; Floros, Michael C.
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  149. Does cost optimization approximate the real-world energy transition?. (2016). Trutnevyte, Evelina.
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  150. Virtual generation tribe based robust collaborative consensus algorithm for dynamic generation command dispatch optimization of smart grid. (2016). Zhang, Xiaoshun ; Li, LI ; Yang, BO ; Yu, Tao.
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  151. Hybrid diagnosis to characterise the energy and environmental enhancement of photovoltaic modules using smart materials. (2016). Royo, Patricia ; Ferreira, German ; Lopez-Sabiron, Ana M.
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  152. A commentary on the US policies for efficient large scale renewable energy storage systems: Focus on carbon storage cycles. (2016). Gener, Emre ; Agrawal, Rakesh .
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  153. Roles of local and national energy systems in the integration of renewable energy. (2016). Lund, Henrik ; Thellufsen, Jakob Zinck .
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  154. A linear programming model for power distribution with demand response and variable renewable energy. (2016). Babonneau, Frederic ; Haurie, Alain ; Caramanis, Michael .
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  155. Modelling, assessment and Sankey diagrams of integrated electricity-heat-gas networks in multi-vector district energy systems. (2016). Liu, Xuezhi ; Mancarella, Pierluigi.
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  156. Economic valuation of heat pumps and electric boilers in the Danish energy system. (2016). Nielsen, Maria Gronnegaard ; Madsen, Henrik ; Pedersen, Thomas Engberg ; Zugno, Marco ; Morales, Juan Miguel .
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  157. Analysis of the economic feasibility and reduction of a building’s energy consumption and emissions when integrating hybrid solar thermal/PV/micro-CHP systems. (2016). Dominguez, Servando Alvarez ; Rodriguez, Enrique Angel ; Ramos, Jose Sanchez ; Salmeron, Jose Manuel.
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  158. Prosumers in district heating networks – A Swedish case study. (2016). Brange, Lisa ; Lauenburg, Patrick ; Englund, Jessica .
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  159. Combined analysis of electricity and heat networks. (2016). Liu, Xuezhi ; Bagdanavicius, Audrius ; Jenkins, Nick ; Wu, Jianzhong.
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  160. Investing in Photovoltaics: Timing, Plant Sizing and Smart Grids Flexibility. (2016). moretto, michele ; Bertolini, Marina ; Dalpaos, Chiara .
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  161. Regulatory Options for Local Reserve Energy Markets: Implications for Prosumers, Utilities, and other Stakeholders. (2016). Madlener, Reinhard ; Rosen, Christiane .
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  162. Unpacking Big Systems - Natural Language Processing meets Network Analysis. A Study of Smart Grid Development in Denmark. (2015). Jurowetzki, Roman .
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  163. Wind Integration into Energy Systems with a High Share of Nuclear Power—What Are the Compromises?. (2015). Syri, Sanna ; Rinne, Samuli ; Zakeri, Behnam.
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  164. Operation and control strategies of integrated distributed energy resources: A review. (2015). Rahman, Hasimah A ; Fadhl, Saeed O ; Hassan, Mohammad Yusri ; Kim, Gan Chin ; Jordehi, Rezaee A ; Shah, MD.
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  165. Review of energy system flexibility measures to enable high levels of variable renewable electricity. (2015). Mikkola, Jani ; Lund, Peter D. ; Salpakari, Jyri ; Lindgren, Juuso .
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  166. The role of Portuguese electricity generation regimes and industrial production. (2015). Marques, António ; Fuinhas, José.
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  167. Electrical energy storage systems: A comparative life cycle cost analysis. (2015). Zakeri, Behnam ; Syri, Sanna.
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  168. Empty promises or promising futures? The case of smart grids. (2015). Kovacic, Zora ; Giampietro, Mario.
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  169. Hourly electricity consumption in Norwegian households – Assessing the impacts of different heating systems. (2015). Kipping, A ; Tromborg, E.
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  170. Optimal planning of combined heat and power systems within microgrids. (2015). Zidan, Aboelsood ; Eldessouky, Ahmed ; Gabbar, Hossam A.
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    RePEc:eee:energy:v:93:y:2015:i:p1:p:235-244.

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  171. Simulation-based optimization of sustainable national energy systems. (2015). Bjeli, Ilija Batas ; Rajakovi, Nikola .
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    RePEc:eee:energy:v:91:y:2015:i:c:p:1087-1098.

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  172. Defining a convergence network platform framework for smart grid and intelligent transport systems. (2015). Coronado, Adrian E.
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  173. Maximizing biofuel production in a thermochemical biorefinery by adding electrolytic hydrogen and by integrating torrefaction with entrained flow gasification. (2015). Clausen, Lasse R..
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  174. Negotiation context analysis in electricity markets. (2015). Pinto, Tiago ; Praa, Isabel ; Sousa, Tiago M. ; Vale, Zita.
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  175. A regional optimisation of renewable energy supply from wind and photovoltaics with respect to three key energy-political objectives. (2015). Killinger, Sven ; Fichtner, Wolf ; Kreifels, Niklas ; McKenna, Russell ; Mainzer, Kai .
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  176. The possibilities of combined heat and power production balancing large amounts of wind power in Finland. (2015). Rinne, S. ; Syri, S..
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  177. A real-time demand response algorithm for heterogeneous devices in buildings and homes. (2015). Yu, Mengmeng ; Huang, Xuefei ; Hong, Seung Ho .
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  178. Hierarchical management for integrated community energy systems. (2015). Xu, Xiandong ; Li, Kang ; Yu, Xiaodan ; Jia, Hongjie ; Jin, Xiaolong.
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  179. Optimal energy mix for transitioning from fossil fuels to renewable energy sources – The case of the Mexican electricity system. (2015). Vidal-Amaro, Juan Jose ; Sheinbaum-Pardo, Claudia ; Ostergaard, Poul Alberg.
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  180. Smart Energy Systems for coherent 100% renewable energy and transport solutions. (2015). Moller, B. ; Nielsen, S. ; Karnoe, P. ; ostergaard, P. A. ; Sperling, K. ; Ridjan, I. ; Wenzel, H. ; Lund, H. ; Hvelplund, F. K. ; Connolly, D. ; Mathiesen, B. V..
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  181. Pumped hydro storage plants with improved operational flexibility using constant speed Francis runners. (2015). De Pascale, A. ; Orlandini, V. ; Branchini, L. ; Perez-Blanco, H. ; Beevers, D..
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  182. Market Design for Trading Commoditized Renewable Energy. (2014). Heshmati, Almas ; Abolhosseini, Shahrouz.
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  183. Market Design for Trading Commoditized Renewable Energy. (2014). Heshmati, Almas ; Abolhosseini, Shahrouz.
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  184. Linking meters and markets: Roles and incentives to support a flexible demand side. (2014). Katz, Jonas.
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  185. Challenges and prospects of electricity production from renewable energy sources in Slovenia. (2014). Sucic, Boris ; Pusnik, Matevz ; Al-Mansour, Fouad .
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  186. A multi-objective genetic approach to domestic load scheduling in an energy management system. (2014). Gomes, alvaro ; Oliveira, Carlos ; Antunes, Carlos Henggeler ; Soares, Ana .
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  187. Development of EU (European Union) energy market agenda and security of supply. (2014). Sencar, Marko ; Pozeb, Viljem ; Krope, Tina .
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  188. Dynamic properties of the preferences for renewable energy sources – A wind power experience-based approach. (2014). Ladenburg, Jacob.
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  189. Energy storage systems supporting increased penetration of renewables in islanded systems. (2014). Bizuayehu, A. W. ; Santos, S. F. ; Rodrigues, E. M. G., ; Godina, R. ; Contreras, J. ; Catalão, J. P. S., .
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  190. A comparison between renewable transport fuels that can supplement or replace biofuels in a 100% renewable energy system. (2014). Mathiesen, B. V. ; Ridjan, I. ; Connolly, D..
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  191. The use of superporous p(AAc (acrylic acid)) cryogels as support for Co and Ni nanoparticle preparation and as reactor in H2 production from sodium borohydride hydrolysis. (2014). Seven, Fahriye ; Sahiner, Nurettin .
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  192. An enviro-economic function for assessing energy resources for district energy systems. (2014). Reddy, Bale V. ; Rosen, Marc A. ; Rezaie, Behnaz .
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  193. Linkages between demand-side management and congestion in the European electricity transmission system. (2014). Johnsson, Filip ; Unger, Thomas ; Odenberger, Mikael ; Goransson, Lisa ; Goop, Joel.
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  194. Renewable energies impacting the optimal generation mix: The case of the Iberian Electricity Market. (2014). Mendes, Carla ; Soares, Isabel.
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  195. Electricity decarbonisation pathways for 2050 in Portugal: A TIMES (The Integrated MARKAL-EFOM System) based approach in closed versus open systems modelling. (2014). Silva, Patricia ; Pina, Andre ; Martins, Victor ; da Silva, Patricia Pereira ; Vasconcelos, Jorge ; Gerbelova, Hana ; Amorim, Filipa .
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  196. 4th Generation District Heating (4GDH). (2014). Mathiesen, Brian Vad ; Werner, Sven ; Svendsen, Svend ; Wiltshire, Robin ; Thorsen, Jan Eric ; Lund, Henrik ; Hvelplund, Frede.
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  197. A hybrid simulated annealing approach to handle energy resource management considering an intensive use of electric vehicles. (2014). Morais, Hugo ; Vale, Zita ; Sousa, Tiago ; Pinto, Tiago ; Carvalho, Joao Paulo .
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  198. Value of flexible consumption in the electricity markets. (2014). Biegel, Benjamin ; Harbo, Silas ; Andersen, Palle ; Hansen, Lars Henrik ; STOUSTRUP, Jakob .
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  199. Experimental evaluation of BZ-GW (BACnet-ZigBee smart grid gateway) for demand response in buildings. (2014). Kim, Gi Myung ; Hong, Seung Ho .
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  200. A mathematical model for the optimal operation of the University of Genoa Smart Polygeneration Microgrid: Evaluation of technical, economic and environmental performance indicators. (2014). Pampararo, Fabio ; Bracco, Stefano ; Robba, Michela ; Rossi, Mansueto ; Delfino, Federico.
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  201. Multi-objective optimized management of electrical energy storage systems in an islanded network with renewable energy sources under different design scenarios. (2014). Graditi, G. ; Sanseverino, Riva E. ; Di Silvestre, M. L. ; Ippolito, M. G. ; Zizzo, G..
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  202. Heat Roadmap Europe: Combining district heating with heat savings to decarbonise the EU energy system. (2014). Moller, B. ; Persson, U. ; Boermans, T. ; Werner, S. ; Nielsen, S. ; ostergaard, P. A. ; Lund, H. ; Trier, D. ; Connolly, D. ; Mathiesen, B. V..
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  203. The impact of carbon capture and storage on a decarbonized German power market. (2014). Weber, C. ; Eickholt, V. ; Spiecker, S..
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  204. Assessment and evaluation of flexible demand in a Danish future energy scenario. (2014). Kwon, Pil Seok ; ostergaard, Poul .
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  205. Interactions between electricity generation sources and economic activity in Greece: A VECM approach. (2014). Marques, António ; Fuinhas, José ; Menegaki, Angeliki N..
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  206. Energy saving potential of utilizing natural ventilation under warm conditions – A case study of Mexico. (2014). Oropeza-Perez, Ivan ; Ostergaard, Poul Alberg.
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  207. Does controlled electric vehicle charging substitute cross-border transmission capacity?. (2014). Martinez-Anido, Carlo Brancucci ; Lukszo, Zofia ; Verzijlbergh, Remco ; de Vries, Laurens .
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  208. A Smarter Grid for Renewable Energy: Different States of Action. (2013). Koenigs, Clark ; Elling, Caroline ; Kreiter, Amelia ; Peterson, Tarla R. ; Suri, Mudita ; Eagles, Julia ; Stephens, Jennie C. ; Wilson, Elizabeth J..
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  209. Review of grid-tie micro-generation systems without energy storage: Towards a new approach to sustainable hybrid energy systems linked to energy efficiency. (2013). Sauma, Enzo E. ; Yanine, Franco F..
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  210. AC-microgrids versus DC-microgrids with distributed energy resources: A review. (2013). Mwasilu, Francis ; Lee, JU ; Jung, Jin-Woo ; Justo, Jackson John .
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  211. Priority order in using biomass resources – Energy systems analyses of future scenarios for Denmark. (2013). Kwon, Pil Seok ; Ostergaard, Poul Alberg.
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  212. A novel role for bioenergy: A flexible, demand-oriented power supply. (2013). Ortwein, Andreas ; Szarka, Nora ; Trommler, Marcus ; Eichhorn, Marcus ; Scholwin, Frank ; Jacobi, Fabian H. ; Thran, Daniela.
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  213. The development of smart homes market in the UK. (2013). Whitmarsh, Lorraine ; Davidson, Rosemary ; Balta-Ozkan, Nazmiye.
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  214. Modeling for planning municipal electric power systems associated with air pollution control – A case study of Beijing. (2013). Fu, D. Z. ; Zhu, Y. ; Li, Y. P. ; Huang, G. H..
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  215. Conceptual design of a municipal energy and environmental system as an efficient basis for advanced energy planning. (2013). Pivec, Aleksandra ; uek, Lidija ; Petek, Janez ; Kostevek, Anja .
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  216. A closed-loop energy price controlling method for real-time energy balancing in a smart grid energy market. (2013). Kaygusuz, Asim ; Alagoz, Serkan ; Akcin, Murat .
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  217. GIS-based assessment of the district heating potential in the USA. (2013). Wagner, Fabian ; Schopp, Wolfgang ; Cofala, Janusz ; Gils, Hans Christian.
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  218. The feasibility of synthetic fuels in renewable energy systems. (2013). Mathiesen, Brian Vad ; Dui, Neven ; Ridjan, Iva ; Connolly, David.
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  219. The looming revolution: How photovoltaics will change electricity markets in Europe fundamentally. (2013). Lettner, Georg ; Haas, Reinhard ; Duic, Neven ; Auer, Hans.
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  220. Increasing wind power penetration into the existing Serbian energy system. (2013). osi, Boris ; Rajakovi, Nikola ; Dui, Neven ; Bjeli, Ilija Batas .
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  221. Forecasting long-term energy demand of Croatian transport sector. (2013). Mathiesen, Brian Vad ; Luli, Zoran ; Pukec, Tomislav ; Dui, Neven ; Krajai, Goran.
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  222. Distributed optimal power flow for smart grid transmission system with renewable energy sources. (2013). Chen, Jyun-Fu ; Lin, Shin-Yeu .
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  223. Economic competitiveness of off-peak hydrogen production today – A European comparison. (2013). Bourasseau, C. ; Dautremont, S. ; Albou, S. ; Louyrette, J. ; Mansilla, C..
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  224. Economic and environmental optimization model for the design and the operation of a combined heat and power distributed generation system in an urban area. (2013). Dentici, Gabriele ; Bracco, Stefano ; Siri, Silvia .
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  225. Optimal scheduling of industrial combined heat and power plants under time-sensitive electricity prices. (2013). Grossmann, Ignacio E. ; Mitra, Sumit ; Sun, Lige .
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  226. Modeling, nonlinear dynamical analysis of a novel power system with random wind power and its control. (2013). Chen, Diyi ; Ma, Xiaoyi ; Liu, SI.
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  227. Photovoltaic and wind energy systems monitoring and building/home energy management using ZigBee devices within a smart grid. (2013). Catalão, J. P. S., ; Melicio, R. ; Batista, N. C. ; Matias, J. C. O., .
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  228. Developing pathways for energy storage in the UK using a coevolutionary framework. (2013). Stone, Dave ; Bolton, Ronan ; Taylor, Peter G. ; Upham, Paul.
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  229. A comparison of innovation policy in the smart grid industry across the pacific: China and the USA. (2013). Lin, Chen-Chun ; Shyua, Joseph Z. ; Yang, Chia-Han.
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  230. What’s the most cost-effective policy of CO2 targeted reduction: An application of aggregated economic technological model with CCS?. (2013). Duan, Hong-Bo ; Fan, Ying ; Zhu, Lei.
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  231. The Impact Of Carbon Capture And Storage On A Decarbonized German Power Market. (2013). Spiecker, Stephan ; Eickholt, Volker .
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  232. A literature review on integration of distributed energy resources in the perspective of control, protection and stability of microgrid. (2012). Halder nee Dey, S., ; Chowdhury, S. P. ; Basak, Prasenjit .
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  233. The electricity prices in the European Union. The role of renewable energies and regulatory electric market reforms. (2012). López-Menéndez, Ana ; Lopez, Ana J. ; Garcia-Alvarez, Maria Teresa ; Moreno, Blanca.
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  234. Balancing wind energy and participating in electricity markets with a fuel cell population. (2012). Heinz, Boris ; Henkel, Johannes .
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  235. Modelling elements of Smart Grids – Enhancing the OSeMOSYS (Open Source Energy Modelling System) code. (2012). Rogner, H. H. ; Hermann, S. ; Welsch, M. ; Howells, M. ; Bazilian, M. ; DeCarolis, J. F..
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  236. Comparison of future energy scenarios for Denmark: IDA 2050, CEESA (Coherent Energy and Environmental System Analysis), and Climate Commission 2050. (2012). Kwon, Pil Seok ; Ostergaard, Poul Alberg.
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  238. A user-mode distributed energy management architecture for smart grid applications. (2012). Karabiber, A. ; Alagoz, B. B. ; Kaygusuz, A..
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