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Building Temperature Control Based on Population Dynamics
DOI:10.1109/TCST.2013.2252175.png)
摘要
En 中文
Temperature control in buildings is a dynamic resource allocation problem, which can be approached using nonlinear methods based on population dynamics (i.e., replicator dynamics). A mathematical model of the proposed control technique is shown, including a stability analysis using passivity concepts for an interconnection of a linear multivariable plant driven by a nonlinear control system. In order to illustrate our control strategy, some simulations are performed, and we compare our proposed technique with other control strategies in a model with a fixed structure. Finally, experimental results are shown in order to observe the performance of some of these strategies in a multizone temperature testbed.
Keyword:
Energy efficiency
evolutionary game theory
passivity
population dynamics
resource management
temperature control
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3.9
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1.7W
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Demand reduction in building energy systems based on economic model predictive control基于经济模型预测控制的建筑能源系统需求削减

