Energy routing strategy of cold and heat networks in integrated energy stations

Qingguang Yu, Le Li, Zhicheng Jiang, Xiaoyu Li, Zhuoxu Chen, Jiali Ren, Yixuan Chen, Che Wei
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Abstract

With the access of large-scale renewable energy sources and distributed power sources, the importance of building an energy internet with internet technology as the core to optimally coordinate and control the distributed renewable energy infrastructure settings through an energy management system in order to optimally complement multiple energy sources, such as electricity, cooling, heat and water, continues to be highlighted. This paper proposes an energy routing strategy based on the interoperability of the cold and heat pipeline networks of distributed energy stations, firstly using a neural network method to make short-term predictions of the cooling and heating loads, and carrying out optimal scheduling before the integrated energy station day according to the prediction results; then carrying out a heat and pressure balance analysis of the cooling and heating system, adding a pipeline network loss constraint on the basis of the scheduling model; finally using a message queue telemetry transmission communication Finally, a message queue telemetry communication protocol is used to achieve efficient information security transfer and ensure smooth internal calls and external access to the edge server.
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综合能源站冷热网能量路由策略
随着大规模可再生能源和分布式电源的接入,构建以互联网技术为核心的能源互联网,通过能源管理系统优化协调和控制分布式可再生能源基础设施设置,实现电、冷、热、水等多种能源的优化互补的重要性日益凸显。提出了一种基于分布式能源站冷热管网互操作性的能源路由策略,首先利用神经网络方法对综合能源站冷热负荷进行短期预测,并根据预测结果进行综合能源站日前的最优调度;然后对冷热系统进行热压平衡分析,在调度模型的基础上增加管网损耗约束;最后,采用消息队列遥测通信协议实现高效的信息安全传输,保证内部呼叫和外部访问边缘服务器的顺畅。
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