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Lessons learned from microgrid implementation at electric utility

机译:电力实用程序中从微电网实现中汲取的经验教训

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In recent years, the topic of microgrids has become one of the most commonly debated issues at numerous conferences. Microgrids gained even more traction after hurricanes Harvey and Irma knocked out the power to almost 10 million people in southeast US. The development and advances in technology, communications and distributed intelligence during the last decade have enabled the creation of microgrid test beds, that utilize distributed generation (DG) sources such as solar or wind farms, diesel or natural gas generators, batteries, fuel cells, combined heat and power (CHP) and others. Since 2015, Duke Energy's Emerging Technologies Office has engineered, developed, installed, and commissioned three phases of its Mount Holly microgrid in North Carolina, with the main objective of trying to understand and investigate the engineering challenges of design, construction, commissioning and maintenance and operation of the microgrid, along with the development of distributed intelligence platform capabilities associated with microgrid control. This paper reflects the lessons learned from the implementation and operation of Mount Holly microgrid at Duke Energy.
机译:近年来,微电网的主题已成为众多会议中最常见的问题之一。在Hurricrvees Harveys Harvey和Irma在美国东南部击败了近1000万人的权力,微普利甚至更加牵引。在过去十年中在技术,通信和分布式智能的发展和进步已经使得微电网试验台的创造,利用分布式发电(DG),如太阳能或风力发电场,柴油或天然气发电机,蓄电池,燃料电池,混合热量和功率(CHP)等。自2015年,杜克能源的新兴技术办公室设计,开发,安装,并在北卡罗莱纳州的委托,对其Mount Holly的微电网的三个阶段,以试图了解和调查设计,施工,调试和维护的工程挑战主要目标和微电网的操作,随着与微电网控制相关的分布式智能平台能力的开发。本文反映了从霍莉微电网的实施和运行中汲取的经验教训。

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