A multi agent-based optimal control method for combined cooling and power systems with thermal energy storage
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Yang Zhao | Chaobo Zhang | Zihao Wang | Hongbo Li | Yang Zhao | Hongbo Li | Chaobo Zhang | Zihao Wang
[1] Qunyin Gu,et al. Integrated assessment of combined cooling heating and power systems under different design and management options for residential buildings in Shanghai , 2012 .
[2] Gerhard Weiss,et al. Multiagent systems: a modern approach to distributed artificial intelligence , 1999 .
[3] Barat Ghobadian,et al. Energy life-cycle assessment and CO2 emissions analysis of soybean-based biodiesel: a case study. , 2014 .
[4] Jesús Lizana,et al. Advanced low-carbon energy measures based on thermal energy storage in buildings: A review , 2018 .
[5] Jiangjiang Wang,et al. An improved operation strategy of combined cooling heating and power system following electrical load , 2015 .
[6] Yacine Rezgui,et al. Computational intelligence techniques for HVAC systems: A review , 2016, Building Simulation.
[7] Liuchen Chang,et al. Multiagent-Based Hybrid Energy Management System for Microgrids , 2014, IEEE Transactions on Sustainable Energy.
[8] Pedro J. Mago,et al. Evaluation of a turbine driven CCHP system for large office buildings under different operating strategies , 2010 .
[9] Juan M. Corchado,et al. Multi-Agent Systems Applications in Energy Optimization Problems: A State-of-the-Art Review , 2018, Energies.
[10] Mohand Tazerout,et al. Fuel savings and CO2 emissions for tri-generation systems , 2003 .
[11] Lingfeng Wang,et al. Development of multi-agent system for building energy and comfort management based on occupant behaviors , 2013 .
[12] Zhiqiang Zhai,et al. Performance comparison of combined cooling heating and power system in different operation modes , 2011 .
[13] Fan Li,et al. A hybrid optimization-based scheduling strategy for combined cooling, heating, and power system with thermal energy storage , 2019 .
[14] Zhihua Zhou,et al. A MINLP model of optimal scheduling for a district heating and cooling system: A case study of an energy station in Tianjin , 2017 .
[15] Dirk Müller,et al. A Modelica library for the agent-based control of building energy systems , 2017 .
[16] Xiaopeng Li,et al. A microgrids energy management model based on multi-agent system using adaptive weight and chaotic search particle swarm optimization considering demand response , 2020 .
[17] Aryuanto Soetedjo,et al. An Embedded Platform for Testbed Implementation of Multi-Agent System in Building Energy Management System , 2019 .
[18] Tin-Tai Chow,et al. Design optimization and two-stage control strategy on combined cooling, heating and power system , 2019, Energy Conversion and Management.
[19] X. J. Luo,et al. Development of integrated demand and supply side management strategy of multi-energy system for residential building application , 2019, Applied Energy.
[20] James E. Braun,et al. General approaches for determining the savings potential of optimal control for cooling in commercial buildings having both energy and demand charges , 2016 .
[21] Zhihua Zhou,et al. Hourly operation strategy of a CCHP system with GSHP and thermal energy storage (TES) under variable loads: A case study , 2015 .
[22] Carlos Henggeler Antunes,et al. Stochastic optimization of trigeneration systems for decision-making under long-term uncertainty in energy demands and prices , 2019, Energy.
[23] Guangya Zhu,et al. Design optimisation and performance appraisal of a combined cooling, heating and power system primed with Maisotsenko combustion turbine cycle , 2018, Energy Conversion and Management.
[24] Liuchen Chang,et al. Economic Analysis and Optimal Design on Microgrids With SS-PVs for Industries , 2014, IEEE Transactions on Sustainable Energy.
[25] Shengwei Wang,et al. An agent-based distributed real-time optimal control strategy for building HVAC systems for applications in the context of future IoT-based smart sensor networks , 2020 .
[26] Sheng Li,et al. Multi-objective optimal operation strategy study of micro-CCHP system , 2012, Energy.
[27] Aaron S. Bernstein,et al. Energy Savings, Emission Reductions, and Health Co-Benefits of the Green Building Movement , 2018, ISEE Conference Abstracts.
[28] Amjad Anvari-Moghaddam,et al. A multi-agent based energy management solution for integrated buildings and microgrid system , 2017 .
[29] Qizhao Lin,et al. Study on the optimization and sensitivity analysis of CCHP systems for industrial park facilities , 2020 .
[30] Yongjun Sun,et al. Optimal scheduling of buildings with energy generation and thermal energy storage under dynamic electricity pricing using mixed-integer nonlinear programming , 2015 .
[31] Amanda Pertzborn,et al. Using distributed agents to optimize thermal energy storage , 2019, Journal of Energy Storage.
[32] Yang Zhao,et al. MPC-based optimal scheduling of grid-connected low energy buildings with thermal energy storages , 2015 .
[33] Tengfang T. Xu,et al. An evaluation of the effects of various parameter weights on typical meteorological years used for building energy simulation , 2009 .
[34] John H. Holland,et al. Adaptation in Natural and Artificial Systems: An Introductory Analysis with Applications to Biology, Control, and Artificial Intelligence , 1992 .
[35] K. F. Fong,et al. Development of multi-supply-multi-demand control strategy for combined cooling, heating and power system primed with solid oxide fuel cell-gas turbine , 2017 .
[36] Lingfeng Wang,et al. Multi-zone building energy management using intelligent control and optimization , 2013 .
[37] Milind Tambe,et al. Coordinating occupant behavior for building energy and comfort management using multi-agent systems , 2012 .
[38] Pedro J. Mago,et al. Evaluation of the potential emissions reductions from the use of CHP systems in different commercial buildings , 2012 .
[39] Pierluigi Mancarella,et al. Assessment of the Greenhouse Gas Emissions from Cogeneration and Trigeneration Systems. Part II: Analysis Techniques and Application Cases , 2008 .
[40] Fang Fang,et al. A new operation strategy for CCHP systems with hybrid chillers , 2012 .
[41] John H. Holland,et al. Adaptation in Natural and Artificial Systems: An Introductory Analysis with Applications to Biology, Control, and Artificial Intelligence , 1992 .