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Harvesting maximal PV energy with fine grained energy distribution: An alternative to traditional PV systems in buildings

机译:通过细粒度的能量分配来收集最大的PV能量:建筑物中传统PV系统的替代方法

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The existing renewable technology in use, particularly solar PVs for homes and other buildings, is billed as a significant step towards providing more robust, secure and affordable electricity. However, unavailability of electricity buyback programs in many regions, and recent changes in buyback policies in some countries make solar costlier due to the need for extra storage in the system. To this end, we present our system called SMaRTI: Self-Managing Renewable Technology Integration. This system is mainly designed for places where the utility grid is available, but for various reasons any excess electrical energy cannot be put back onto the grid through buyback programs. In traditional hybrid or grid-tied PV systems with battery backup, the electrical energy from the PV and the grid are tied at the inverter output. However, in SMaRTI this tying up is carried out at multiple distribution points in the system, giving SMaRTI an opportunity to optimize the PV output more efficiently. By using SMaRTI, not only one can utilize up to 98% of electrical energy generated by PV system but also the cost of ownership is reduced by more than 40% over a ten years period. (C) 2017 Elsevier B.V. All rights reserved.
机译:据称,现有的可再生技术正在使用中,特别是用于家庭和其他建筑物的太阳能光伏发电,是朝着提供更坚固,安全和可负担的电力迈出的重要一步。但是,由于许多地区无法使用电力回购计划,并且一些国家最近对回购政策进行了更改,由于系统中需要额外的存储,因此太阳能成本更高。为此,我们介绍了称为SMaRTI的系统:自我管理可再生技术集成。该系统主要设计用于有公用电网可用的地方,但是由于各种原因,任何多余的电能都无法通过回购计划重新投入电网。在具有备用电池的传统混合动力或并网光伏系统中,来自光伏和电网的电能被束缚在逆变器输出端。但是,在SMaRTI中,此绑定是在系统中的多个分配点执行的,这为SMaRTI提供了更有效地优化PV输出的机会。通过使用SMaRTI,不仅可以利用光伏系统产生的98%的电能,而且十年内拥有成本降低了40%以上。 (C)2017 Elsevier B.V.保留所有权利。

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