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Micro-grid and DG expansion: Key role of storage, projected global demand

机译:微电网和分布式发电的扩展:存储的关键作用,预计的全球需求

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The authors are part of an extended team which has successfully installed more than a MW of PV globally to provide electrification via micro-grids. After numerous installations, the authors have developed various lessons-learned with regards to installation, usage, and optimization, and have captured key metrics to provide better understanding for expansion. Several observations have come from the various off-grid installations: (1) the primary usage is in the evening; (2) battery use is a critical component; (4) PV acts primarily to charge the batteries; (3) diesel can play a significant role. As a result, the authors have developed a more comprehensive view of the dynamics driving micro-grid usage and Distributed Generation (DG) development. It is observed that storage plays a dominant role in that the usage patterns peak in non-solar (evening) hours. The authors develop a methodology for optimizing micro-grid DG which can include PV, batteries, and diesel generators, along with wind. The authors forecast this PV market to grow to >10GW in the next decade because of key drivers such as: non-grid Telecom, off-grid electrification, and also cyber threats to the electric grid infrastructure, along with climate change driving disruptive weather. This segment will strongly contribute to the Tera-Wt levels of PV coming up in the next 25 years. The advantages of micro-grids with mixed diesel use will be discussed in the context of optimizing cost vs benefit. The goal is to better understand the mix of PV, battery storage, and diesel and the best configuration for different demands.
机译:作者是扩展团队的一部分,该团队已在全球成功安装了超过一兆瓦的光伏发电设备,可通过微电网实现电气化。在进行了无数次安装之后,作者开发了关于安装,使用和优化方面的各种经验教训,并掌握了关键指标,以更好地理解扩展。来自各种离网装置的一些观察结果:(1)主要用途是在晚上; (2)电池使用是至关重要的组成部分; (4)PV的主要作用是为电池充电; (3)柴油可以发挥重要作用。结果,作者对驱动微电网使用和分布式发电(DG)发展的动力学有了更全面的认识。可以看出,存储起着主要作用,因为使用模式会在非太阳能(晚上)小时达到峰值。作者开发了一种优化微电网DG的方法,该方法可包括光伏,电池和柴油发电机以及风能。作者预测,由于以下主要驱动因素,该光伏市场将在未来十年内增长到10GW以上:非电网电信,离网电气化以及对电网基础设施的网络威胁,以及气候变化引发破坏性天气。该细分市场将为未来25年内将达到的Tera-Wt PV水平做出巨大贡献。混合使用柴油的微电网的优势将在优化成本与收益的背景下进行讨论。目的是更好地了解光伏,电池存储和柴油的混合以及针对不同需求的最佳配置。

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