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Design of Short-Term Forecasting Model of Distributed Generation Power for Solar Power Generation

机译:太阳能分布式发电短期预测模型设计

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Background/Objectives: For efficient PhotoVoltaic (PV) power generation, computing and information technologies are increasingly used in irradiance forecasting and correction. Methods/Statistical Analysis: Today the majority of PV modules are used for grid-connected power generation, so solar generation forecasting that predicts available PV output ahead is essential for integrating PV resources into electricity grids. This paper proposes a short-term solar power forecasting system that employs Neural Network (NN) models to forecast irradiance and PV power. Results: The proposed system uses the weather observations of a ground weather station, the medium-term weather forecasts of a physical model, and the short-term weather forecasts of the Weather Research and Forecasting (WRF) model as input. To increase prediction accuracy, the proposed system performs forecast corrections and determines the correction coefficients based on the characteristics and temperature of PV modules. The proposed system also analyzes the inclination angle of PV modules to predict PV power outputs. Conclusion/Application: In the future, the proposed forecasting system for solar power generation resources will be further refined and run in real environments.
机译:背景/目的:为了有效地发电(PV),在辐照度预测和校正中越来越多地使用计算和信息技术。方法/统计分析:今天,大多数光伏模块都用于并网发电,因此太阳能发电量预测(提前预测可用光伏输出)对于将光伏资源整合到电网中至关重要。本文提出了一种短期太阳能预测系统,该系统采用神经网络(NN)模型来预测辐照度和PV功率。结果:拟议的系统使用地面气象站的天气预报,物理模型的中期天气预报以及Weather Research and Forecasting(WRF)模型的短期天气预报作为输入。为了提高预测精度,建议的系统执行预测校正并根据PV模块的特性和温度确定校正系数。拟议的系统还分析了光伏组件的倾斜角度,以预测光伏发电量。结论/应用:将来,拟议的太阳能发电资源预测系统将得到进一步完善,并在实际环境中运行。

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