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WREF 2012: DESIGN AND PERFORMANCE OF SOLAR DECATHLON 2011 HIGH-PENETRATION MICROGRID

机译:WREF 2012:太阳能十项全能2011高渗透性微格栅的设计和性能

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The U.S. Department of Energy Solar Decathlon challenges collegiate teams to design, build, and operate solar-powered houses that are cost-effective, energy-efficient, and attractive. The Solar Decathlon 2011 was held in Washington, D.C., from September 23 to October 2, 2011. A high-penetration microgrid was designed, installed, and operated for the Solar Decathlon 2011 to grid-connect 19 highly energy-efficient, solar-powered competition houses to a single utility connection point. The capacity penetration of this microgrid (defined as maximum PV generation divided by maximum system load over a two-week period) was 74% based on 1-minute averaged data. Temporary, ground-laid conductors and electrical distribution equipment were installed to grid-connect the Solar Decathlon village, which included the houses as well as other electrical loads used by the event organizers. While 16 of the houses were connected to the 60 Hz microgrid, three houses from Belgium, China, and New Zealand were supplied with 50 Hz power. The design of the microgrid, including the connection of the houses powered by 50 Hz and a standby diesel generator, is discussed in this paper. In addition to the utility-supplied net energy meters at each house, a microgrid monitoring system was installed to measure and record energy consumption and PV energy production at 1-second intervals at each house. Bidirectional electronic voltage regulators were installed for groups of competition houses, which held the service voltage at each house to acceptable levels. The design and successful performance of this high-penetration microgrid is presented from the house, microgrid operator, and utility perspectives.
机译:美国能源部的太阳能十项全能挑战大学团队设计,建造和运营具有成本效益,能源效率和吸引力的太阳能房屋。 2011年十项全能运动会于2011年9月23日至10月2日在华盛顿特区举行。2011年十项全能运动会设计,安装并运行了高渗透力微电网,以将19个高能效,太阳能供电并网竞赛场所连接到单个公用事业连接点。根据一分钟的平均数据,该微电网的容量渗透率(定义为两周内的最大PV发电量除以最大系统负载)为74%。安装了临时的接地导体和配电设备,以将太阳能十项全能村庄并网连接,其中包括房屋以及活动组织者使用的其他电力负荷。在其中16座房屋连接到60 Hz微电网的同时,向比利时,中国和新西兰的三座房屋提供了50 Hz电源。本文讨论了微电网的设计,包括由50 Hz供电的房屋与备用柴油发电机的连接。除了每间房屋由公用事业公司提供的净电表外,还安装了微电网监控系统,以每隔一秒钟的间隔测量和记录能源消耗以及光伏发电量。为一组比赛场安装了双向电子稳压器,以将每个比赛场的工作电压保持在可接受的水平。从房屋,微电网运营商和公用事业的角度介绍了这种高渗透性微电网的设计和成功性能。

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