本地能源生成、分配和共享的体系结构

Mike He, E. Reutzel, Xiaofan Jiang, R. Katz, S. Sanders, D. Culler, Ken Lutz
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引用次数: 89

摘要

由于基本的设计原则限制了美国电网处理21世纪关键能源挑战的能力,美国电网面临着重大问题。我们提出了一种创新的电力架构,植根于从互联网和微电网中吸取的经验教训,它解决了这些问题,同时优雅地与当前电网接口,以允许非破坏性的增量采用。这样一个系统,我们称之为“本地”电网,由智能电源开关(IPS)控制,可以由负载、能源和储能组成。所提出的体系结构的期望结果是产生一个为分布式可再生能源、普遍的能源存储和稳定的自治系统设计的电网网络。我们将描述这样一个系统的组织原则,以确保良好的运行,如通信和能量传输协议的要求,监管和控制方案,以及市场化的运行规则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Architecture for Local Energy Generation, Distribution, and Sharing
The United States electricity grid faces significant problems resulting from fundamental design principles that limit its ability to handle the key energy challenges of the 21st century. We propose an innovative electric power architecture, rooted in lessons learned from the Internet and microgrids, which addresses these problems while interfacing gracefully into the current grid to allow for non-disruptive incremental adoption. Such a system, which we term a "Local" grid, is controlled by intelligent power switches (IPS), and can consist of loads, energy sources, and energy storage. The desired result of the proposed architecture is to produce a grid network designed for distributed renewable energy, prevalent energy storage, and stable autonomous systems. We will describe organizing principles of such a system that ensure well-behaved operation, such as requirements for communication and energy transfer protocols, regulation and control schemes, and market-based rules of operation.
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