在传统电网中,需求响应一直以人工操作的方式实现,不但效率低下,而且容易产生业务处理错误。本文采取合理的接口设计方法和功能模块的划分,对数字电网需求中的“自响应”功能进行设计,重点实现“自响应”的数据资源共享服务的应用接口,满足电网发展的自动化需求。在对市场及用户需求调研的基础上,分析业务的设计环节,对响应信息交换系统的组成和结构进行研究。系统设计采用三层架构模式,设计了需求“自响应”的客户端和服务器,结合功能模块对关键技术进行研究,对该领域的研究具有实际的指导意义。
Abstract
In the traditional power grid,demand response has been realized by manual operation,which is not only inefficient,but also prone to business processing errors.This paper adopts a reasonable interface design method and the division of functional modules to design and implement the "self-response" function in the demand of digital power grid,focusing on the application interface of "self-response" data resource sharing service,so as to meet the automation needs of power grid development.Based on the investigation of market and user needs,this paper analyzes the design link of business,and studies the composition and structure of response information exchange system.The system design adopts the three-tier architecture mode,designs the client and server that need "self-response",and studies the key technologies combined with the functional modules,which has practical guiding significance for the research in this field.
关键词
需求响应 /
接口架构 /
业务需求 /
信息模型 /
信息交换
Key words
demand response /
interface architecture /
business requirements /
information model /
information switching
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参考文献
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基金
*国家重点研发计划资助项目(2020YFB0906004, 2020YFB0906000)。