基于智能逆变器和数据分配服务(DDS)的多智能体稳压系统的设计与现场实现

S. Saxena, Nader A. El-Taweel, H. Farag, L. S. Hilaire
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引用次数: 7

摘要

本文提出了一种利用智能逆变器和数据分配服务(DDS)实现智能配电网电压调节的多智能体方案。DDS是一种基于物联网(IoT)的通信框架,非常适合处理智能电网应用程序中代理间通信的苛刻要求,包括:异步和低延迟消息传递、高可扩展性和无缝互操作性。将智能逆变器与DDS相结合,形成了一个完全分布式的控制和通信平台,可以显著提高分布式和可再生能源在配电网中的渗透率。提出的多智能体方案在现实世界的微电网中进行了测试,以显示其使用局部和协调控制来缓解电压调节挑战的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Field Implementation of a Multi-Agent System for Voltage Regulation Using Smart Inverters and Data Distribution Service (DDS)
This paper proposes a multi-agent scheme to regulate voltage in smart distribution grids using smart inverters and Data Distribution Service (DDS). DDS is an Internet of Things (IoT) based communication framework that is well suited to handle the demanding requirements of inter-agent communication within smart grid applications, including: asynchronous and low-latency messaging, high scalability, and seamless interoperability. Coupling smart inverters with DDS results in a fully distributed control and communication platform that can significantly increase the penetration of distributed and renewable energy resources in distribution networks. The proposed multi-agent scheme is tested at a real-world microgrid to show its ability to mitigate voltage regulation challenges using both local and coordinated control.
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