Photovoltaic system multi-time scale energy management method considering hybrid fast and slow dynamics

The invention provides a photovoltaic system multi-time scale energy management method considering hybrid fast and slow dynamics, and relates to a model prediction control method based on a physical PV prediction model and an accurate parameterization battery model. According to the method, a multi-...

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Hauptverfasser: HAN NI, ZHANG HONGTAO, YAO ZUOHENG, YAO YUAN, WU SHANGRUN, CUI JIA, ZHANG XIMING, WANG ANNI, FU TIANHE, WANG FUBANG, WANG ZHEN, JIN HONGWEI, WANG YINGDI
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creator HAN NI
ZHANG HONGTAO
YAO ZUOHENG
YAO YUAN
WU SHANGRUN
CUI JIA
ZHANG XIMING
WANG ANNI
FU TIANHE
WANG FUBANG
WANG ZHEN
JIN HONGWEI
WANG YINGDI
description The invention provides a photovoltaic system multi-time scale energy management method considering hybrid fast and slow dynamics, and relates to a model prediction control method based on a physical PV prediction model and an accurate parameterization battery model. According to the method, a multi-time-scale structure is formed by two time scales: a long coarse-grained time scale is used for the full-day span and the resolution is 15 minutes, and a short fine-grained time scale is used for the 15-minute span and the resolution is 1 second. Compared with a current single-time-scale method, the replacement structure of the method can maintain high precision, and meanwhile, dynamic mixing of a fast system and a slow system is managed through reasonable calculation time. Compared with a traditional baseline method, the framework can obviously reduce the power cost. 本发明提供一种考虑混合快、慢动态的光伏系统多时间尺度能量管理方法,通过基于物理的PV预测模型和精确参数化电池模型的模型预测控制方法。本方法由两个时间尺度组成的多时间尺度结构:较长的粗粒度时间尺度,用于全天跨度,分辨率为15分钟以及较短的细粒度时间尺度,用于15分钟跨度,分辨率为1秒。与当前单时间尺
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subjects CALCULATING
CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTINGELECTRIC POWER
COMPUTING
CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
COUNTING
ELECTRIC DIGITAL DATA PROCESSING
ELECTRICITY
GENERATION
PHYSICS
SYSTEMS FOR STORING ELECTRIC ENERGY
title Photovoltaic system multi-time scale energy management method considering hybrid fast and slow dynamics
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