NeTS: Small: Collaborative Research: Scalability and Reliability for Network Communication Infrastructure in Smart Grid
NeTS: Small: Collaborative Research: Scalability and Reliability for Network Communication Infrastructure in Smart Grid
批准号:
1423408
负责人:
Yi Qian
金额:
$22.55万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-10-01 至 2018-09-30
中文摘要
作为整个智能电网路线图的第一个重要里程碑和基本步骤,先进的计量基础设施(AMI)是一个感知、收集和分析来自智能电表的能源使用和电能质量数据,并应要求或按计划与计量装置进行通信的系统。尽管最近对智能电网通信基础设施进行了大量的研究,但智能电网AMI通信体系结构的可扩展性和可靠性仍然没有得到很好的解决,尽管这是该领域最重要的两个问题。这些都严重阻碍了有效的通信技术在智能电网领域的发展和部署。此外,在了解智能电网的可扩展性和可靠性之间的相互作用和权衡,以及设计智能电网的最佳性能指标方面,仍然存在严重的知识库空白。本课题研究了智能电网中新出现的通信网络设计的挑战性问题,并研究了智能电网中的可扩展性和可靠性方面及其相互作用。该研究旨在分析和设计广域网级先进计量基础设施的可扩展体系结构,并为节能自持的邻域网络设计可靠的通信。这些方法包括识别和解决大数据量和不同通信需求的智能电网通信在可扩展性和可靠性设计方面面临的新挑战,设计新的邻域网络优化部署算法,总结各种场景下可扩展和可靠的端到端智能电网通信的设计策略和原则。该项目引入了新颖的网络设计策略和原则,以实现可扩展和可靠的网络通信基础设施,可以实时处理海量的急性心肌梗死智能抄表数据。本项目的研究工作将促进对智能电网网络通信基础设施领域的科学认识,并对设计可扩展、可靠的智能电网AMI系统具有重要影响。该项目的成果将促进我们的社会过渡到一个更节能和更可持续的未来。该项目纳入了一项教育计划,吸引代表人数不足的学生参加。
英文摘要
As the first major milestone and the fundamental step of the overall smart grid roadmap, an advanced metering infrastructure (AMI) is a system that senses, collects and analyzes data on energy usage and power quality from smart meters, and communicates with metering devices on request or on schedule. In spite of many recent research activities on smart grid communication infrastructure, scalability and reliability of communication architectures in smart grid AMI are still not well-addressed yet, even though they are two of the most important issues in this field. These have seriously hampered the development and deployment of effective communication technologies to smart grid field. Moreover, there is still a critical gap in the knowledge base to understand the interactions and the tradeoffs of scalability and reliability, and to design the best performance metrics in smart grid AMI.This project investigates the challenging issues of emerging communication network design in smart grid, and study scalability and reliability aspects and their interactions in AMI. The proposed research aims at analysis and design of scalable architectures for advanced metering infrastructures in the wide area network level, and designs reliable communications for energy efficient self-sustaining neighborhood area networks. The approaches include identifying and addressing the new challenges in the scalability and reliability design for smart grid communications with a large amount of data and different communication requirements, designing novel algorithms for optimal deployment of neighborhood area networks, and summarizing design strategies and principles for scalable and reliable end-to-end smart grid communications under various scenarios. This project introduces novel network design strategies and principles to achieve scalable and reliable network communication infrastructure that can handle a tremendous amount of AMI smart metering data in real-time. The research efforts conducted in this project will advance scientific understanding in the field of network communication infrastructure in smart grid, and have a significant impact on the design of scalable and reliable smart grid AMI systems. The outcomes of the project will foster the transition of our society into a more energy efficient and sustainable future. The project incorporates an education plan that engages underrepresented students.
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