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Integration of Photovoltaics into Building Energy Usage through Advanced Control of Rooftop Unit

机译:通过屋顶单位的先进控制将光伏模型整合到建筑能源用途

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This paper presents a computational approach to forecast photovoltaic (PV) power in kW based on a neural network linkage of publicly available cloud cover data and on-site solar irradiance sensor data. We also describe a control approach to utilize rooftop air conditioning units (RTUs) to support renewable integration. The PV forecasting method is validated using data from a rooftop PV panel installed on the Distributed Energy, Communications, and Controls (DECC) laboratory at Oak Ridge National Laboratory. The validation occurs in multiple phases to ensure that each component of the approach is the best representation of the actual expected output. The control of the RTU is based on model predictive methods.
机译:本文介绍了基于公开的云覆盖数据和现场太阳辐照度传感器数据的神经网络连接预测KW的光伏(PV)功率的计算方法。 我们还描述了一种使用屋顶空调单元(RTU)来支持可再生集成的控制方法。 使用安装在橡木岭国家实验室的分布式能量,通信和控制(DECC)实验室安装的屋顶PV面板的数据进行验证PV预测方法。 验证发生在多个阶段,以确保该方法的每个组件是实际预期输出的最佳表示。 RTU的控制是基于模型预测方法。

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