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Novel control strategy and modeling of air source heat pump for consuming PV power

机译:消耗光伏发电的空气源热泵的新型控制策略和建模

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The rapid development of PV power generation has led to numerous problems of system operation and PV power consumption. As a new type of heat pump, the air source heat pump has advantages of energy saving, environment protection and good flexibility. In this paper, PV generation power during generation peak time is consumed by air source heat pumps to produce and storage heat. First, this paper establishes a basic thermophysical model of air source heat pump and analyzes the method of using air source heat pumps to consume PV generation power. Second, a control strategy for consuming PV generation power by clustering air source heat pumps with different parameters is proposed. Then, a multi-objective scheduling model of air source heat pumps is presented. Finally, NSGA-II is used to solve the multi-objective model, and the corresponding Pareto optimal solutions are obtained. The simulation results show that the model proposed in this paper can well follow the PV generation output, reduce the PV power curtailment and heating cost of users.
机译:光伏发电的飞速发展已经导致系统运行和光伏功耗的诸多问题。空气源热泵作为一种新型的热泵,具有节能,环保,柔韧性好的优点。本文中,发电高峰时段的光伏发电功率被空气源热泵消耗,以产生和存储热量。首先,本文建立了空气源热泵的基本热物理模型,并分析了使用空气源热泵消耗光伏发电的方法。其次,提出了通过对具有不同参数的空气源热泵进行聚类来消耗光伏发电功率的控制策略。然后,建立了空气源热泵的多目标调度模型。最后,使用NSGA-II求解多目标模型,并获得相应的帕累托最优解。仿真结果表明,本文提出的模型可以很好地跟踪光伏发电量,减少用户的光伏功率削减和供暖成本。

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