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Photovoltaic power generation for air-conditioning system based on predictive control

机译:基于预测控制的空调系统光伏发电

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In this paper, an auxiliary power supply scheme using photovoltaic power generation for an air conditioning system and a novel control strategy are proposed. The proposed auxiliary power supply system employs a boost power converter, a bidirectional power converter and photovoltaic arrays. The boost power converter, controlled by a predictive control strategy, provides maximum power tracking (MPT) state on the photovoltaic (PV) arrays as well as power generation facility function on the AC utility grid. Furthermore the bidirectional power converter controls the power flow balance between the loads and two different power sources according to the condition of the load power and the supplied power from photovoltaic arrays. It is shown that the maximum power tracking of the PV arrays, the unit power factor of AC utility grid and the descent input DC voltage regulation of the air conditioning system are achieved by the proposed predictive control strategy. The controller design procedure for the proposed approach is detailed. Simulation results on a laboratory prototype system are also discussed.
机译:本文提出了一种利用光伏发电的空调系统辅助电源方案和一种新颖的控制策略。所提出的辅助电源系统采用升压电源转换器,双向电源转换器和光伏阵列。由预测控制策略控制的升压功率转换器在光伏(PV)阵列上提供最大功率跟踪(MPT)状态,并在AC公用电网上提供发电设施功能。此外,双向功率转换器根据负载功率和光伏阵列提供的功率的条件来控制负载与两个不同电源之间的功率流平衡。结果表明,通过所提出的预测控制策略,可以实现光伏阵列的最大功率跟踪,交流电网的单位功率因数以及空调系统的下降输入直流电压调节。针对所提出的方法的控制器设计过程进行了详细说明。还讨论了在实验室原型系统上的仿真结果。

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