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用电信息采集系统多业务高效协同处理关键技术 被引量:13

Key Technologies in High Efficiency Coprocessing of Multi-service for Power Consumption Information Acquisition System
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摘要 在全球能源互联网大力发展的背景下,电力企业可以通过用电信息的共享来实现智能用电的需求,为电力客户提供智能化和多样化的用电服务。以用电信息采集系统为基础,设计构建了用电信息统一接口平台。首先,分析国内外用电服务数据交互与共享的发展现状;接着,从多业务高效协同处理研究出发,构建统一接口平台的系统架构,包括数据获取与转换、业务的高效识别、多业务协同处理等;最后,探讨支撑多业务高效协同处理的关键技术,包括基于多标签的多业务交互需求分类技术、基于深度包检测的高效识别技术、动态分配策略下多任务并行处理技术等。通过系统的应用,实现了采集系统与外部系统数据交互接口的统一、业务交互的规范管理、数据交互内容和方法的灵活配置,系统交互更加安全可靠。通过统一对外发布采集数据,充分发挥了用电信息采集系统对电能基础数据平台的支撑作用。 With the development of global energy internet, power enterprises can realize intelligent power utilization by sharing the information of power consumption, offering a intelligent and diversified service for power customers. Based on power consumption information acquisition system, the paper designs and establishes a unified interface platform for power utilization information. Firstly, the domestic and foreign development status of electricity service data interaction and sharing is analyzed. Then, based on the research of high efficiency coprocessing of multi-service, the system architecture of the unified interface platform is built, including data acquisition and conversion, services identification with high efficiency and the coprocessing of the multi-service. At last, key? technologies in the high efficiency coprocessing of the multi-service is discussed, such as multi-service interactive demand classification based on multi-label, recognition technology with high efficiency based on deep packet inspection and multi task parallel processing with dynamic allocation strategy. Through the application of the system, it realizes the unification of the data interaction interface between the acquisition system and the external system, the standard management of business interaction, the flexible configuration of data exchange content and methods, making the system interaction more secure and reliable.
出处 《智慧电力》 2017年第11期78-84,共7页 Smart Power
基金 国家电网公司科技项目(5211DS160005)~~
关键词 智能用电 交互需求分类 高效识别 协同处理 用电信息采集系统 intelligent power utilization interactive demand classification efficiently identifying coprocessing power consumption information acquisition system
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