下一代智能电网控制体系结构概述

A. Shahid
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引用次数: 6

摘要

如今,智能电网以其集成化、复杂化和通信化的架构正变得越来越实用。可再生能源、控制自动化、信息和通信技术(ICT)、先进的监控和保护以及智能计量的加入进一步增加了复杂性。下一代智能电网将作为一个具有多路通信、多向潮流、分布式智能(包括控制、稳定和优化)的交互式能源网络。为了实现这种类型的架构,需要解决控制设计中的性能限制,如功率波动、电压不平衡、频率不匹配、转换管理和故障处理。这种智能网络必须在各种运行条件下具有可扩展性和灵活性,以实现高效、可靠和经济的运行。本文概述了下一代智能电网的控制体系结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An overview of control architecture for next generation smart grids
Smart grids are becoming practical nowadays with their integrated, complex and communicative architecture. The addition of renewable energy sources, control automation, information and communication technologies (ICT), advanced monitoring and protection and smart metering has further increased the complexity. Next generation smart grid will act as an interactive energy web with multi-way communication, multi-directional power flow, distributed intelligence including control, stability and optimization. To enable this type of architecture, the performance constraints in control design such as power fluctuations, voltage unbalance, frequency mismatch, transition management and fault handling need to be addressed. This intelligent network must be scalable and flexible under variable operating conditions for efficient, reliable, and economic operation. An overview of the control architecture for next generation smart grids is provided in this paper.
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