Optimal Dispatch for a Combined Cooling, Heating and Power Microgrid Considering Building Virtual Energy Storage
Author:
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering
Link
http://link.springer.com/article/10.1007/s42835-018-00055-z/fulltext.html
Reference31 articles.
1. Keirstead J, Jennings M, Sivakumar A (2012) A review of urban energy system models:approaches, challenges and opportunities. Renew Sustain Energ Rev 16(6):3847–3866
2. Faruqui A, Sergici S, Sharif A (2010) The impact of informational feedback onenergy consumption a survey of the experimental evidence. Energy 35(4):1598–1608
3. International Energy Agency (2012) Energy technology perspectives 2012: pathways to a clean energy system. International Energy Agency, Paris
4. The European Parliament (2010) Directive 2010/31/EU of the European Parliament and the Council on 19 May 2010 on the energy performance of buildings (recast). Off J Eur Union 153(June):13–35
5. Yu J, Tian L, Xu X et al (2015) Evaluation on energy and thermal performance for office building envelope in different climate zones of China. Energy Build 86:626–639
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