An Intelligent Web-Based Energy Management System for Distributed Energy Resources Integration and Optimization

IF 0.7 4区 计算机科学 Q4 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Lijun Zhao;Qingsheng Li;Guanhua Ding
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引用次数: 0

Abstract

The integration of renewable energy sources into power distribution systems frequently presents challenges for conventional energy management systems (EMS) due to the unpredictable and unstable characteristics of such energy sources. As a result, novel and cutting-edge solutions are required. This paper presents an intelligent web-based energy management system (iW-EMS) specifically designed to address the integration and optimization of distributed energy resources, as outlined in the proposed approach. The system incorporates a hybrid novel optimization approach that integrates simulated annealing and cone programming to effectively manage the distribution of energy resources and attain optimal outcomes from the proposed EMS. Additionally, it leverages generative AI services to create optimal scenarios based on historical data and real-time information, ensuring adaptability to the dynamic nature of renewable energy generation, providing a user-friendly and flexible web environment for scenario planning. The proposed framework facilitates seamless communication and collaboration among stakeholders involved in renewable energy integration, while also enabling the incorporation of real-world data sources such as weather forecasts and energy consumption patterns into the planning process.
基于网络的分布式能源资源整合与优化智能能源管理系统
由于可再生能源具有不可预测和不稳定的特点,因此将可再生能源整合到配电系统中经常给传统的能源管理系统(EMS)带来挑战。因此,需要新颖、前沿的解决方案。本文介绍了一种基于网络的智能能源管理系统(iW-EMS),该系统专门用于解决分布式能源资源的整合与优化问题。该系统采用了一种混合的新型优化方法,将模拟退火和锥形编程整合在一起,以有效管理能源资源的分布,并从拟议的能源管理系统中获得最佳结果。此外,它还利用生成式人工智能服务,根据历史数据和实时信息创建最佳方案,确保适应可再生能源发电的动态性质,为方案规划提供一个用户友好、灵活的网络环境。拟议的框架有助于可再生能源整合相关方之间的无缝沟通与协作,同时还能将天气预报和能源消耗模式等现实世界的数据源纳入规划流程。
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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来源期刊
Journal of Web Engineering
Journal of Web Engineering 工程技术-计算机:理论方法
CiteScore
1.80
自引率
12.50%
发文量
62
审稿时长
9 months
期刊介绍: The World Wide Web and its associated technologies have become a major implementation and delivery platform for a large variety of applications, ranging from simple institutional information Web sites to sophisticated supply-chain management systems, financial applications, e-government, distance learning, and entertainment, among others. Such applications, in addition to their intrinsic functionality, also exhibit the more complex behavior of distributed applications.
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