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I-BAT: A Data-Intensive Solution Based on the Internet of Things to Predict Energy Behaviors in Microgrids

机译:I-BAT:基于物联网的数据密集型解决方案,用于预测微电网中的能源行为

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摘要

Microgrids present the challenge to reach a proper balance between local production and consumption, in order to reduce the usage of energy from external sources. This work presents a data-intensive solution to predict the energy behaviors. Thereby, control actions can be carried out such as decrease heating systems levels and switch of low-priority devices. For this purpose, this work has deployed an Advanced Metering Infrastructure (AMI) based on the Internet of Things (IoT) in the Techno-Pole testbed. This deployment provides the data from energy-related parameters such as load curves of the overall building through Non-Intrusive Load Monitoring (NILM), a wireless network of IoT-based smart meters to measure and control appliances, and finally the generated power curve by 2000 square meters of photovoltaic panels. The prediction model proposed is based on recognition of electrical signatures. These electrical signatures have been used to detect complex usage patterns. The modelled patterns have allowed to identify the work day of the week, and predict the load and generation curves for 15 minutes with accuracy over the 90%. This short-term prediction allows one to carry out the proper actions in order to balance the microgrid status (i.e., get a proper balance between production and consumption with respect to worked requirements).
机译:微电网面临着在本地生产和消费之间达到适当平衡的挑战,以减少外部能源的使用。这项工作提出了一种数据密集型解决方案来预测能量行为。因此,可以执行控制动作,例如降低加热系统水平和切换低优先级设备。为此,这项工作已经在Techno-Pole测试平台中部署了基于物联网(IoT)的高级计量基础架构(AMI)。此部署通过非侵入式负载监控(NILM),基于IoT的智能电表的无线网络来测量和控制设备,提供与能源相关的参数(例如整个建筑物的负载曲线)中的数据,最后生成通过2000平方米的光伏板。提出的预测模型基于对电子签名的识别。这些电子签名已用于检测复杂的使用模式。建模的模式可以识别一周中的工作日,并预测15分钟内的负载和发电曲线,其准确性超过90%。这种短期预测允许人们采取适当的措施,以平衡微电网的状态(即,就工作要求而言,在生产和消费之间取得适当的平衡)。

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