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Consumer-Led Transition: Australia's World-Leading Distributed Energy Resource Integration Efforts
IEEE Power and Energy Magazine ( IF 3.1 ) Pub Date : 2020-10-16 , DOI: 10.1109/mpe.2020.3014720
Naomi Stringer , Anna Bruce , Iain MacGill , Navid Haghdadi , Peter Kilby , Jacqui Mills , Taru Veijalainen , Matt Armitage , Nigel Wilmot

It's a sunny spring DAY in South Australia. A light breeze is cooling the coastal state capital of Adelaide as approximately 260,000 distributed solar photovoltaic (D-PV) systems on residential and business rooftops generate electricity, setting a new state record for the lowest minimum electrical demand for the third time this season. All looks peaceful throughout the suburbs. D-PVs form an irregular yet persistent patchwork across one-third of the houses in the state. Most consumers are going about their day without a glance at the D-PV panels on these roofs. However, the mild temperature and bountiful sunshine lead the D-PV generation to climb, causing the voltage to creep higher and power to flow in reverse across large swathes of the distribution network. Some D-PVs are tripping off, unbeknownst to their owners and the local network operator.

中文翻译:

以消费者为主导的转型:澳大利亚世界领先的分布式能源整合方案

今天是南澳大利亚阳光明媚的春天。微风轻拂,使沿海州首府阿德莱德冷却,住宅和商业屋顶上的约260,000分布式太阳能光伏(D-PV)系统发电,创下了本季度第三次最低最低用电需求的新州记录。整个郊区看起来都很和平。D-PV在该州三分之一的房屋中形成了不规则但持久的拼布。大多数消费者一整天都在浏览这些屋顶上的D-PV面板。但是,温和的温度和充沛的阳光导致D-PV发电量攀升,从而导致电压攀升至更高,功率在整个配电网中反向流动。一些D-PV跳闸了,
更新日期:2020-10-20
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