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NREL Smart Grid projects

机译:NREL智能电网项目

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摘要

Summary form only given. Although implementing Smart Grid projects at the distribution level provides many advantages and opportunities for advanced operation and control, a number of significant challenges must be overcome to maintain the high level of safety and reliability that the modern grid must provide. For example, while distributed generation (DG) promises to provide opportunities to increase reliability and efficiency and may provide grid support services such as volt / var control, the presence of DG can impact distribution operation and protection schemes. Additionally, the intermittent nature of many DG energy sources such as photovoltaics (PV) can present a number of challenges to voltage regulation, etc. This presentation provides an overview a number of Smart Grid projects being performed by the National Renewable Energy Laboratory (NREL) along with utility, industry, and academic partners. These projects include modeling and analysis of high penetration PV scenarios (with and without energy storage), development and testing of interconnection and microgrid equipment, as well as the development and implementation of advanced instrumentation and data acquisition used to analyze the impacts of intermittent renewable resources. Additionally, standards development associated with DG interconnection and analysis as well as Smart Grid interoperability will be discussed.
机译:仅给出摘要表格。虽然在分销级别实施智能电网项目,但对于先进的操作和控制提供了许多优点和机会,但必须克服许多重大挑战,以维持现代电网必须提供的高水平的安全性和可靠性。例如,虽然分布式发电(DG)承诺提供提高可靠性和效率的机会,并且可以提供电网支持服务,如Volt / Var控制,DG的存在可能会影响分配操作和保护方案。另外,许多DG能源的间歇性质如光伏(PV)可以呈现对电压调节等的许多挑战等。该演示提供了全国可再生能源实验室(NRER)执行的许多智能电网项目与实用,工业和学术合作伙伴一起。这些项目包括高渗透光伏场景的建模和分析(有和没有能量存储),开发和测试互连和微电网设备,以及用于分析间歇可再生资源的影响的先进仪器和数据采集的开发和实施。另外,将讨论与DG互连和分析以及智能电网互操作性相关的标准开发。

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