Research and Application of “Internet+” Intelligent Heating System for Central Heating

Pingping Huang, Xin Yan, Kaixuan Guo
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引用次数: 1

Abstract

At present, China's central heating industry is developing rapidly. It is an important direction for the transformation and upgrading of the energy industry to use the advantages of advanced information and communication technology and Internet platform to promote the intelligent energy production, promote the interconnection of various types of energy flow network and the coordinated transformation of various energy forms. In the framework of the era of industrial Internet of Things, the introduction of "Internet +" technology helps to improve the production, operation, management and service level of central heating system from the system engineering level. The "Internet +" intelligent heating system in the field of central heating integrates heating physical system and information system deeply, forming a new application mode of "digital twin". It takes "heat source -heat network -heat station -user heat transfer" as the main line and adopts B/S architecture. It consists of data perception layer, data acquisition layer, data access layer, business logic layer, presentation layer and terminal access layer. In a "Internet +" intelligent heating platform demonstration construction applications, through the construction of entire network hydraulic balance analysis, the source network integration of collaborative scheduling, energy consumption statistics and analysis, management fees management, customer service management subsystem module, such as the heating index to reduce energy consumption, operating cost savings, improve work efficiency and service quality improvement has made significant achievements.
集中供热“互联网+”智能供暖系统的研究与应用
目前,中国集中供热行业发展迅速。利用先进的信息通信技术和互联网平台优势,推动能源生产智能化,促进各类能源流网络互联互通,促进各种能源形态协同转化,是能源产业转型升级的重要方向。在工业物联网时代的框架下,“互联网+”技术的引入,有助于从系统工程层面提升集中供热系统的生产、经营、管理和服务水平。集中供热领域的“互联网+”智能供热系统,将供热物理系统与信息系统深度融合,形成“数字孪生”新应用模式。以“热源-热网-热站-用户换热”为主线,采用B/S架构。它由数据感知层、数据采集层、数据访问层、业务逻辑层、表示层和终端访问层组成。在某“互联网+”智能供热平台示范建设应用中,通过建设全网水力平衡分析、源网一体化协同调度、能耗统计分析、管理费用管理、客服管理等子系统模块,降低供热指标能耗,节约运行成本;提高工作效率和提高服务质量取得了显著成效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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