2015
DOI: 10.1016/j.apenergy.2014.11.005
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Options for residential building services design using fuel cell based micro-CHP and the potential for heat integration

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Cited by 127 publications
(57 citation statements)
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“…and the step of substituting the residual building energy demand through energy supply from active technologies (e.g., PV system with ESS) must be adopted. Most of the previous studies, however, were conducted by focusing on only one strategy (i.e., passive or active strategies) [130][131][132][133][134][135][136][137][138][139][140][141][142]. Therefore, an integrated analysis of the energy performance of a building where both passive and active strategies are applied should be performed in the early phase of a building's life cycle from the perspective of achieving nZEB.…”
Section: Integration Of the Passive And Active Strategiesmentioning
confidence: 99%
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“…and the step of substituting the residual building energy demand through energy supply from active technologies (e.g., PV system with ESS) must be adopted. Most of the previous studies, however, were conducted by focusing on only one strategy (i.e., passive or active strategies) [130][131][132][133][134][135][136][137][138][139][140][141][142]. Therefore, an integrated analysis of the energy performance of a building where both passive and active strategies are applied should be performed in the early phase of a building's life cycle from the perspective of achieving nZEB.…”
Section: Integration Of the Passive And Active Strategiesmentioning
confidence: 99%
“…In the previous studies analyzed in Section 2.2.2, most applied DR to analyze energy savings based on historical data [130][131][132][133][134][135][136][137][138][139][140][141][142]. However, in order to effectively manage the building from nZEB perspectives, it is necessary to obtain the energy demands and supply information in real-time.…”
Section: Developing An Integrated Real-time Monitoring System For Buimentioning
confidence: 99%
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“…This triad is also valuable for organising research efforts shedding light into these challenges. Technological adaptation-oriented research has contributed with knowledge on the integration of electricity storage in distribution systems [37][38][39][40][41], integration of distributed generation sources from wind [42][43][44], solar [45][46][47][48][49], CHP [50][51][52], and micro-CHP [53][54][55][56], integration of EVs [57][58][59][60], integration of smart meters [61][62][63][64][65][66], implementation of DR [67][68][69][70][71], deployment of active distribution management systems [72][73][74][75][76], and advanced grid monitoring and control [77][78][79], as well as the use of artificial intelligence methods [80][81][82], and machine learning applicati...…”
Section: Electricity Distribution Adaptation To a Smarter And More Sumentioning
confidence: 99%
“…Based on linear programming techniques, [17] addressed the optimal sizing of hybrid micro-CHP to satisfy the energy demand in dwellings. In order to design superior integrated systems, [18] reviewed the existing design options for heating systems incorporating fuel cell micro-CHP in dwellings, motivating a new methodology considering all possible interconnections of plant. [19] explored the potential overall benefit of integrating a resistor for storage heating, which acts as a power sink when needed, presenting a cost-minimizing control strategy for a residential micro-CHP system.…”
Section: Introductionmentioning
confidence: 99%